@prefix dbo: .
@prefix dbr: .
dbr:Factor_V_Leiden dbo:wikiPageWikiLink dbr:Exon .
dbr:Insulin_receptor dbo:wikiPageWikiLink dbr:Exon .
dbr:Glycogen_storage_disease_type_II dbo:wikiPageWikiLink dbr:Exon .
dbr:FANCD2OS dbo:wikiPageWikiLink dbr:Exon .
dbr:OR51E1 dbo:wikiPageWikiLink dbr:Exon .
dbr:Amyloid-beta_precursor_protein dbo:wikiPageWikiLink dbr:Exon .
dbr:Neurofibromin_1 dbo:wikiPageWikiLink dbr:Exon .
dbr:LIG3 dbo:wikiPageWikiLink dbr:Exon .
dbr:Aromatic_L-amino_acid_decarboxylase dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:SUCLA2 dbo:wikiPageWikiLink dbr:Exon .
dbr:GABRB3 dbo:wikiPageWikiLink dbr:Exon .
dbr:Ced-3 dbo:wikiPageWikiLink dbr:Exon .
dbr:Glucokinase_regulatory_protein dbo:wikiPageWikiLink dbr:Exon .
dbr:Hexon_protein dbo:wikiPageWikiLink dbr:Exon .
dbr:Tau_protein dbo:wikiPageWikiLink dbr:Exon .
dbr:Trk_receptor dbo:wikiPageWikiLink dbr:Exon .
dbr:C2orf80 dbo:wikiPageWikiLink dbr:Exon .
dbr:CGMP-dependent_protein_kinase dbo:wikiPageWikiLink dbr:Exon .
dbr:CX3CR1 dbo:wikiPageWikiLink dbr:Exon .
dbr:Long_non-coding_RNA dbo:wikiPageWikiLink dbr:Exon .
dbr:Neuronal_self-avoidance dbo:wikiPageWikiLink dbr:Exon .
dbr:FAM151A dbo:wikiPageWikiLink dbr:Exon .
dbr:Ly6 dbo:wikiPageWikiLink dbr:Exon .
dbr:Synaptic_tagging dbo:wikiPageWikiLink dbr:Exon .
dbr:SorCS2 dbo:wikiPageWikiLink dbr:Exon .
dbr:PAK3 dbo:wikiPageWikiLink dbr:Exon .
dbr:LUX dbo:wikiPageWikiLink dbr:Exon .
dbr:Pigment_dispersing_factor dbo:wikiPageWikiLink dbr:Exon .
dbr:Glycogenin-1 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Ube3a-ATS dbo:wikiPageWikiLink dbr:Exon .
dbr:Ced-9 dbo:wikiPageWikiLink dbr:Exon .
dbr:OMA1 dbo:wikiPageWikiLink dbr:Exon .
dbr:MAGEA10 dbo:wikiPageWikiLink dbr:Exon .
dbr:FAM222A dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Reelin dbo:wikiPageWikiLink dbr:Exon .
dbr:TAAR1 dbo:wikiPageWikiLink dbr:Exon .
dbr:AmadeoLab dbo:wikiPageWikiLink dbr:Exon .
dbr:ARNTL dbo:wikiPageWikiLink dbr:Exon .
dbr:Progressive_bulbar_palsy dbo:wikiPageWikiLink dbr:Exon .
dbr:Exitron dbo:wikiPageWikiLink dbr:Exon .
dbr:T790M dbo:wikiPageWikiLink dbr:Exon .
dbr:MRNA_exon dbo:wikiPageWikiLink dbr:Exon ;
dbo:wikiPageRedirects dbr:Exon .
dbr:Exons dbo:wikiPageWikiLink dbr:Exon ;
dbo:wikiPageRedirects dbr:Exon .
dbr:Sequence_motif dbo:wikiPageWikiLink dbr:Exon .
dbr:Serotonin_transporter dbo:wikiPageWikiLink dbr:Exon .
dbr:EZH2 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Eosinophilia dbo:wikiPageWikiLink dbr:Exon .
dbr:Norepinephrine_transporter dbo:wikiPageWikiLink dbr:Exon .
dbr:CD44 dbo:wikiPageWikiLink dbr:Exon .
dbr:Exome_sequencing dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Perlecan dbo:wikiPageWikiLink dbr:Exon .
dbr:Kidd_antigen_system dbo:wikiPageWikiLink dbr:Exon .
dbr:Plasmodium_falciparum_erythrocyte_membrane_protein_1 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Hh_blood_group dbo:wikiPageWikiLink dbr:Exon .
dbr:Folate_receptor_1 dbo:wikiPageWikiLink dbr:Exon .
dbr:C957T dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:FAM63B dbo:wikiPageWikiLink dbr:Exon .
dbr:NDUFV2 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Neuroferritinopathy dbo:wikiPageWikiLink dbr:Exon .
dbr:Leafy dbo:wikiPageWikiLink dbr:Exon .
dbr:Spinal_and_bulbar_muscular_atrophy dbo:wikiPageWikiLink dbr:Exon .
dbr:Parastremmatic_dwarfism dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
@prefix foaf: .
@prefix wikipedia-en: .
wikipedia-en:Exon foaf:primaryTopic dbr:Exon .
dbr:Dopamine_receptor_D4 dbo:wikiPageWikiLink dbr:Exon .
dbr:Transferase dbo:wikiPageWikiLink dbr:Exon .
dbr:Antibody dbo:wikiPageWikiLink dbr:Exon .
dbr:Rh_blood_group_system dbo:wikiPageWikiLink dbr:Exon .
dbr:Guanosine dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Cis_AB dbo:wikiPageWikiLink dbr:Exon .
dbr:Primary_age-related_tauopathy dbo:wikiPageWikiLink dbr:Exon .
dbr:Human_genome dbo:wikiPageWikiLink dbr:Exon .
dbr:Ghrelin dbo:wikiPageWikiLink dbr:Exon .
dbr:Carnitine_palmitoyltransferase_II_deficiency dbo:wikiPageWikiLink dbr:Exon .
dbr:RNA-Seq dbo:wikiPageWikiLink dbr:Exon .
dbr:Cystatin_C dbo:wikiPageWikiLink dbr:Exon .
dbr:PRR29 dbo:wikiPageWikiLink dbr:Exon .
dbr:CYLD_cutaneous_syndrome dbo:wikiPageWikiLink dbr:Exon .
dbr:Protocadherin dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:SCN5A dbo:wikiPageWikiLink dbr:Exon .
dbr:SCAPER dbo:wikiPageWikiLink dbr:Exon .
dbr:Biology dbo:wikiPageWikiLink dbr:Exon .
dbr:Dystrophin dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Spinal_muscular_atrophy dbo:wikiPageWikiLink dbr:Exon .
dbr:MORM_syndrome dbo:wikiPageWikiLink dbr:Exon .
dbr:Coding_region dbo:wikiPageWikiLink dbr:Exon .
dbr:Kniest_dysplasia dbo:wikiPageWikiLink dbr:Exon .
dbr:TCIRG1 dbo:wikiPageWikiLink dbr:Exon .
dbr:Hydrolethalus_syndrome dbo:wikiPageWikiLink dbr:Exon .
dbr:Ribosomal_s6_kinase dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Porcine_circovirus dbo:wikiPageWikiLink dbr:Exon .
dbr:Richard_Gregory dbo:wikiPageWikiLink dbr:Exon .
dbr:Diane_Lipscombe dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:FAM149B1 dbo:wikiPageWikiLink dbr:Exon .
dbr:PBDC1 dbo:wikiPageWikiLink dbr:Exon .
dbr:Marsh_rice_rat dbo:wikiPageWikiLink dbr:Exon .
dbr:Mevalonate_kinase_deficiency dbo:wikiPageWikiLink dbr:Exon .
dbr:Animal_model_of_schizophrenia dbo:wikiPageWikiLink dbr:Exon .
dbr:Prostaglandin_DP1_receptor dbo:wikiPageWikiLink dbr:Exon .
dbr:Prostaglandin_DP2_receptor dbo:wikiPageWikiLink dbr:Exon .
dbr:VLDL_receptor dbo:wikiPageWikiLink dbr:Exon .
dbr:Dystrobrevin dbo:wikiPageWikiLink dbr:Exon .
dbr:CCL11 dbo:wikiPageWikiLink dbr:Exon .
dbr:Adenovirus_early_region_1A dbo:wikiPageWikiLink dbr:Exon .
dbr:HNF1A dbo:wikiPageWikiLink dbr:Exon .
dbr:GNLY dbo:wikiPageWikiLink dbr:Exon .
dbr:PPAP2B dbo:wikiPageWikiLink dbr:Exon .
dbr:Seipin dbo:wikiPageWikiLink dbr:Exon .
dbr:SLC25A46 dbo:wikiPageWikiLink dbr:Exon .
dbr:Fibroblast_growth_factor_23 dbo:wikiPageWikiLink dbr:Exon .
dbr:Signal_peptide dbo:wikiPageWikiLink dbr:Exon .
dbr:Exon_junction_complex dbo:wikiPageWikiLink dbr:Exon .
dbr:Nyctalopin dbo:wikiPageWikiLink dbr:Exon .
dbr:Chip_description_file dbo:wikiPageWikiLink dbr:Exon .
dbr:PLCE1 dbo:wikiPageWikiLink dbr:Exon .
dbr:Large_tumor_antigen dbo:wikiPageWikiLink dbr:Exon .
dbr:Gonadotropin_surge-attenuating_factor dbo:wikiPageWikiLink dbr:Exon .
dbr:ETFDH dbo:wikiPageWikiLink dbr:Exon .
dbr:C10orf67 dbo:wikiPageWikiLink dbr:Exon .
dbr:Casein_kinase_1_isoform_epsilon dbo:wikiPageWikiLink dbr:Exon .
dbr:COX10 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:FAM214B dbo:wikiPageWikiLink dbr:Exon .
dbr:PCDHGA12 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Polypyrimidine_tract dbo:wikiPageWikiLink dbr:Exon .
dbr:SLC25A22 dbo:wikiPageWikiLink dbr:Exon .
dbr:USH1C dbo:wikiPageWikiLink dbr:Exon .
dbr:Small_tumor_antigen dbo:wikiPageWikiLink dbr:Exon .
dbr:SMCO4 dbo:wikiPageWikiLink dbr:Exon .
dbr:Thiamine_transporter_1 dbo:wikiPageWikiLink dbr:Exon .
dbr:Transmembrane_protein_254 dbo:wikiPageWikiLink dbr:Exon .
dbr:Macrostomia dbo:wikiPageWikiLink dbr:Exon .
dbr:DSCAM dbo:wikiPageWikiLink dbr:Exon .
dbr:CCDC47 dbo:wikiPageWikiLink dbr:Exon .
dbr:SHLD1 dbo:wikiPageWikiLink dbr:Exon .
dbr:Jurkat_cells dbo:wikiPageWikiLink dbr:Exon .
dbr:CUX1 dbo:wikiPageWikiLink dbr:Exon .
dbr:Mammary_analogue_secretory_carcinoma dbo:wikiPageWikiLink dbr:Exon .
dbr:P_element dbo:wikiPageWikiLink dbr:Exon .
dbr:STXBP1 dbo:wikiPageWikiLink dbr:Exon .
dbr:Osteogenesis_imperfecta dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:DEPDC7 dbo:wikiPageWikiLink dbr:Exon .
dbr:Androgen_insensitivity_syndrome dbo:wikiPageWikiLink dbr:Exon .
dbr:CD19 dbo:wikiPageWikiLink dbr:Exon .
dbr:CDKN2A dbo:wikiPageWikiLink dbr:Exon .
dbr:Transmembrane_protein_251 dbo:wikiPageWikiLink dbr:Exon .
dbr:SLX4IP dbo:wikiPageWikiLink dbr:Exon .
dbr:Transmembrane_protein_151A dbo:wikiPageWikiLink dbr:Exon .
dbr:P16 dbo:wikiPageWikiLink dbr:Exon .
dbr:Progerin dbo:wikiPageWikiLink dbr:Exon .
dbr:POLG dbo:wikiPageWikiLink dbr:Exon .
dbr:Bestrophin_1 dbo:wikiPageWikiLink dbr:Exon .
dbr:Cyclic_neutropenia dbo:wikiPageWikiLink dbr:Exon .
dbr:Untranslated_region dbo:wikiPageWikiLink dbr:Exon .
dbr:C4orf19 dbo:wikiPageWikiLink dbr:Exon .
dbr:Fibroadenoma dbo:wikiPageWikiLink dbr:Exon .
dbr:Fas_receptor dbo:wikiPageWikiLink dbr:Exon .
dbr:Afatinib dbo:wikiPageWikiLink dbr:Exon .
dbr:Atrial_natriuretic_peptide dbo:wikiPageWikiLink dbr:Exon .
dbr:Progastrin dbo:wikiPageWikiLink dbr:Exon .
dbr:HLA-DQB1 dbo:wikiPageWikiLink dbr:Exon .
dbr:Pseudogene dbo:wikiPageWikiLink dbr:Exon .
dbr:HLA-DRB1 dbo:wikiPageWikiLink dbr:Exon .
dbr:HLA-DRA dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:R-loop dbo:wikiPageWikiLink dbr:Exon .
dbr:H3K36me3 dbo:wikiPageWikiLink dbr:Exon .
dbr:Progeria dbo:wikiPageWikiLink dbr:Exon .
dbr:Enhancer_RNA dbo:wikiPageWikiLink dbr:Exon .
dbr:MIF4GD dbo:wikiPageWikiLink dbr:Exon .
dbr:ERICH2 dbo:wikiPageWikiLink dbr:Exon .
dbr:Index_of_molecular_biology_articles dbo:wikiPageWikiLink dbr:Exon .
dbr:Genome_evolution dbo:wikiPageWikiLink dbr:Exon .
dbr:Glossary_of_genetics dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:LSm dbo:wikiPageWikiLink dbr:Exon .
dbr:G-quadruplex dbo:wikiPageWikiLink dbr:Exon .
dbr:ENCODE dbo:wikiPageWikiLink dbr:Exon .
dbr:CpG_site dbo:wikiPageWikiLink dbr:Exon .
dbr:ENO3 dbo:wikiPageWikiLink dbr:Exon .
dbr:C21orf58 dbo:wikiPageWikiLink dbr:Exon .
dbr:C8orf34 dbo:wikiPageWikiLink dbr:Exon .
dbr:CTAG1B dbo:wikiPageWikiLink dbr:Exon .
dbr:Neuroepigenetics dbo:wikiPageWikiLink dbr:Exon .
dbr:Extrachromosomal_circular_DNA dbo:wikiPageWikiLink dbr:Exon .
dbr:FANTOM dbo:wikiPageWikiLink dbr:Exon .
dbr:Therapeutic_gene_modulation dbo:wikiPageWikiLink dbr:Exon .
dbr:PKM2 dbo:wikiPageWikiLink dbr:Exon .
dbr:Exon-intron_database dbo:wikiPageWikiLink dbr:Exon .
dbr:Resilin dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Cell-free_fetal_DNA dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:BAALC dbo:wikiPageWikiLink dbr:Exon .
dbr:Ensembl_Genomes dbo:wikiPageWikiLink dbr:Exon .
dbr:Proline-rich_protein_30 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:CCDC82 dbo:wikiPageWikiLink dbr:Exon .
dbr:Dominant_white dbo:wikiPageWikiLink dbr:Exon .
dbr:Down_syndrome_research dbo:wikiPageWikiLink dbr:Exon .
dbr:Intergenic_region dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:P14arf dbo:wikiPageWikiLink dbr:Exon .
dbr:Gene_family dbo:wikiPageWikiLink dbr:Exon .
dbr:Gene_structure dbo:wikiPageWikiLink dbr:Exon .
dbr:RUNX1 dbo:wikiPageWikiLink dbr:Exon .
dbr:ZC3H11B dbo:wikiPageWikiLink dbr:Exon .
dbr:Glycogen_storage_disease_type_III dbo:wikiPageWikiLink dbr:Exon .
dbr:Consensus_sequence dbo:wikiPageWikiLink dbr:Exon .
dbr:Corticotropin-releasing_hormone_receptor_1 dbo:wikiPageWikiLink dbr:Exon .
dbr:Creatine_transporter_defect dbo:wikiPageWikiLink dbr:Exon .
dbr:Equine_coat_color_genetics dbo:wikiPageWikiLink dbr:Exon .
dbr:Clonal_hematopoiesis dbo:wikiPageWikiLink dbr:Exon .
dbr:Keratin_6A dbo:wikiPageWikiLink dbr:Exon .
dbr:Keratin_6C dbo:wikiPageWikiLink dbr:Exon .
dbr:Point_accepted_mutation dbo:wikiPageWikiLink dbr:Exon .
dbr:Synonymous_substitution dbo:wikiPageWikiLink dbr:Exon .
dbr:Terminal_deoxynucleotidyl_transferase dbo:wikiPageWikiLink dbr:Exon .
dbr:GENSCAN dbo:wikiPageWikiLink dbr:Exon .
dbr:HBx dbo:wikiPageWikiLink dbr:Exon .
dbr:DSC2 dbo:wikiPageWikiLink dbr:Exon .
dbr:K-mer dbo:wikiPageWikiLink dbr:Exon .
dbr:SOD2 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Exome dbo:wikiPageWikiLink dbr:Exon .
dbr:Angiogenin dbo:wikiPageWikiLink dbr:Exon .
dbr:Familial_dysautonomia dbo:wikiPageWikiLink dbr:Exon .
dbr:Glycophorin_C dbo:wikiPageWikiLink dbr:Exon .
dbr:ARMH3 dbo:wikiPageWikiLink dbr:Exon .
dbr:Ataxin_1 dbo:wikiPageWikiLink dbr:Exon .
dbr:Cream_gene dbo:wikiPageWikiLink dbr:Exon .
@prefix ns4: .
ns4:ATP_translocase_2 dbo:wikiPageWikiLink dbr:Exon .
dbr:Trinucleotide_repeat_expansion dbo:wikiPageWikiLink dbr:Exon .
dbr:Testis_expressed_15 dbo:wikiPageWikiLink dbr:Exon .
dbr:C15orf39 dbo:wikiPageWikiLink dbr:Exon .
dbr:C1orf27 dbo:wikiPageWikiLink dbr:Exon .
dbr:CCDC180 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon ;
dbo:wikiPageDisambiguates dbr:Exon .
dbr:Glutamate_rich_5 dbo:wikiPageWikiLink dbr:Exon .
dbr:HIPK2 dbo:wikiPageWikiLink dbr:Exon .
dbr:ZNF821 dbo:wikiPageWikiLink dbr:Exon .
dbr:Selective_progesterone_receptor_modulator dbo:wikiPageWikiLink dbr:Exon .
dbr:Molecular_Inversion_Probe dbo:wikiPageWikiLink dbr:Exon .
dbr:SR_protein dbo:wikiPageWikiLink dbr:Exon .
dbr:Exon_trapping dbo:wikiPageWikiLink dbr:Exon .
dbr:Extramacrochaetae dbo:wikiPageWikiLink dbr:Exon .
dbr:FTO_gene dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:NPAS2 dbo:wikiPageWikiLink dbr:Exon .
dbr:Tiling_array dbo:wikiPageWikiLink dbr:Exon .
dbr:Vectorette_PCR dbo:wikiPageWikiLink dbr:Exon .
dbr:PLD3 dbo:wikiPageWikiLink dbr:Exon .
dbr:Rh_factor_testing dbo:wikiPageWikiLink dbr:Exon .
dbr:Split_gene_theory dbo:wikiPageWikiLink dbr:Exon .
dbr:TimeLogic dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Nibrin dbo:wikiPageWikiLink dbr:Exon .
dbr:CCL4 dbo:wikiPageWikiLink dbr:Exon .
dbr:Interleukin-8_receptor dbo:wikiPageWikiLink dbr:Exon .
dbr:Protease-activated_receptor_2 dbo:wikiPageWikiLink dbr:Exon .
dbr:RNF227 dbo:wikiPageWikiLink dbr:Exon .
dbr:LRRIQ3 dbo:wikiPageWikiLink dbr:Exon .
dbr:HSH2D dbo:wikiPageWikiLink dbr:Exon .
dbr:DOP1B dbo:wikiPageWikiLink dbr:Exon .
dbr:PTPN22 dbo:wikiPageWikiLink dbr:Exon .
dbr:Alpha_defensin dbo:wikiPageWikiLink dbr:Exon .
dbr:Hereditary_folate_malabsorption dbo:wikiPageWikiLink dbr:Exon .
dbr:CCL8 dbo:wikiPageWikiLink dbr:Exon .
dbr:HLA-F dbo:wikiPageWikiLink dbr:Exon .
dbr:SIGIRR dbo:wikiPageWikiLink dbr:Exon .
dbr:Lymphocyte-activation_gene_3 dbo:wikiPageWikiLink dbr:Exon .
dbr:XCL1 dbo:wikiPageWikiLink dbr:Exon .
dbr:STAT6 dbo:wikiPageWikiLink dbr:Exon .
dbr:STIM2 dbo:wikiPageWikiLink dbr:Exon .
dbr:TREM2 dbo:wikiPageWikiLink dbr:Exon .
dbr:Perilipin-4 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Glutaryl-CoA_dehydrogenase dbo:wikiPageWikiLink dbr:Exon .
dbr:Tyrosinemia_type_I dbo:wikiPageWikiLink dbr:Exon .
dbr:Pantothenate_kinase dbo:wikiPageWikiLink dbr:Exon .
dbr:Ribonuclease_inhibitor dbo:wikiPageWikiLink dbr:Exon .
dbr:C19orf44 dbo:wikiPageWikiLink dbr:Exon .
dbr:C1orf198 dbo:wikiPageWikiLink dbr:Exon .
dbr:C20orf27 dbo:wikiPageWikiLink dbr:Exon .
dbr:C4orf51 dbo:wikiPageWikiLink dbr:Exon .
dbr:C7orf25 dbo:wikiPageWikiLink dbr:Exon .
dbr:C8orf58 dbo:wikiPageWikiLink dbr:Exon .
dbr:CCDC130 dbo:wikiPageWikiLink dbr:Exon .
dbr:CCM2 dbo:wikiPageWikiLink dbr:Exon .
dbr:Interleukin_11 dbo:wikiPageWikiLink dbr:Exon .
dbr:Interleukin_24 dbo:wikiPageWikiLink dbr:Exon .
dbr:Interrupted_gene dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Leucine-rich_repeats_and_iq_motif_containing_1 dbo:wikiPageWikiLink dbr:Exon .
dbr:GIPC3 dbo:wikiPageWikiLink dbr:Exon .
dbr:Galectin-1 dbo:wikiPageWikiLink dbr:Exon .
dbr:OR10A7 dbo:wikiPageWikiLink dbr:Exon .
dbr:OR10R2 dbo:wikiPageWikiLink dbr:Exon .
dbr:OR1Q1 dbo:wikiPageWikiLink dbr:Exon .
dbr:PCDHB12 dbo:wikiPageWikiLink dbr:Exon .
dbr:PCDHB4 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:MTCH1 dbo:wikiPageWikiLink dbr:Exon .
dbr:Ankycorbin dbo:wikiPageWikiLink dbr:Exon .
dbr:Annexin_A7 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Nuclear_prelamin_A_recognition_factor dbo:wikiPageWikiLink dbr:Exon .
dbr:KHDRBS1 dbo:wikiPageWikiLink dbr:Exon .
dbr:PSMB6 dbo:wikiPageWikiLink dbr:Exon .
dbr:OR4D2 dbo:wikiPageWikiLink dbr:Exon .
dbr:OR56B1 dbo:wikiPageWikiLink dbr:Exon .
dbr:QRICH2 dbo:wikiPageWikiLink dbr:Exon .
dbr:Translationally-controlled_tumor_protein dbo:wikiPageWikiLink dbr:Exon .
dbr:ZCCHC18 dbo:wikiPageWikiLink dbr:Exon .
dbr:Corticotropin-releasing_hormone_receptor_2 dbo:wikiPageWikiLink dbr:Exon .
dbr:LOC105377021 dbo:wikiPageWikiLink dbr:Exon .
dbr:LSMEM1 dbo:wikiPageWikiLink dbr:Exon .
dbr:TBX3 dbo:wikiPageWikiLink dbr:Exon .
dbr:TMEM70 dbo:wikiPageWikiLink dbr:Exon .
dbr:Transaldolase_1 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Complement_component_9 dbo:wikiPageWikiLink dbr:Exon .
dbr:Fumarylacetoacetate_hydrolase dbo:wikiPageWikiLink dbr:Exon .
dbr:Pregnancy_zone_protein dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:GABRA5 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:HHIPL1 dbo:wikiPageWikiLink dbr:Exon .
dbr:HIKESHI dbo:wikiPageWikiLink dbr:Exon .
dbr:HLA-DMB dbo:wikiPageWikiLink dbr:Exon .
dbr:HOXC5 dbo:wikiPageWikiLink dbr:Exon .
dbr:HSPB7 dbo:wikiPageWikiLink dbr:Exon .
dbr:DACH1 dbo:wikiPageWikiLink dbr:Exon .
dbr:DAZ1 dbo:wikiPageWikiLink dbr:Exon .
dbr:DAZ3 dbo:wikiPageWikiLink dbr:Exon .
dbr:DLC1 dbo:wikiPageWikiLink dbr:Exon .
dbr:OR56B4 dbo:wikiPageWikiLink dbr:Exon .
dbr:SNRPN_upstream_reading_frame_protein dbo:wikiPageWikiLink dbr:Exon .
dbr:PCDHB5 dbo:wikiPageWikiLink dbr:Exon .
dbr:Tandem_exon_duplication dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Drisapersen dbo:wikiPageWikiLink dbr:Exon .
dbr:Alpha-actinin-3 dbo:wikiPageWikiLink dbr:Exon .
dbr:Chromosome_20_open_reading_frame_85 dbo:wikiPageWikiLink dbr:Exon .
dbr:Glycoprotein_Ib-IX-V_complex dbo:wikiPageWikiLink dbr:Exon .
dbr:KRBA1 dbo:wikiPageWikiLink dbr:Exon .
dbr:ALMS1 dbo:wikiPageWikiLink dbr:Exon .
dbr:ARHGAP8 dbo:wikiPageWikiLink dbr:Exon .
dbr:OR5AS1 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:POLG2 dbo:wikiPageWikiLink dbr:Exon .
dbr:Uncharacterized_LOC644249_gene dbo:wikiPageWikiLink dbr:Exon .
dbr:ACRV1 dbo:wikiPageWikiLink dbr:Exon .
dbr:AOC3 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Heparin_cofactor_II dbo:wikiPageWikiLink dbr:Exon .
dbr:Tex36 dbo:wikiPageWikiLink dbr:Exon .
dbr:BCKDK dbo:wikiPageWikiLink dbr:Exon .
dbr:BCS1L dbo:wikiPageWikiLink dbr:Exon .
dbr:Bx1_benzoxazin1 dbo:wikiPageWikiLink dbr:Exon .
dbr:C16orf95 dbo:wikiPageWikiLink dbr:Exon .
dbr:C19orf67 dbo:wikiPageWikiLink dbr:Exon .
dbr:C1orf127 dbo:wikiPageWikiLink dbr:Exon .
dbr:C2orf73 dbo:wikiPageWikiLink dbr:Exon .
dbr:C2orf74 dbo:wikiPageWikiLink dbr:Exon .
dbr:C7orf26 dbo:wikiPageWikiLink dbr:Exon .
dbr:CCDC113 dbo:wikiPageWikiLink dbr:Exon .
dbr:CCL7 dbo:wikiPageWikiLink dbr:Exon .
dbr:COA7 dbo:wikiPageWikiLink dbr:Exon .
dbr:COQ7 dbo:wikiPageWikiLink dbr:Exon .
dbr:CUTL1 dbo:wikiPageWikiLink dbr:Exon .
dbr:CXCL5 dbo:wikiPageWikiLink dbr:Exon .
dbr:CXorf67 dbo:wikiPageWikiLink dbr:Exon .
dbr:CYC1 dbo:wikiPageWikiLink dbr:Exon .
dbr:Fetal_protein dbo:wikiPageWikiLink dbr:Exon .
dbr:Fibroblast_growth_factor_receptor_3 dbo:wikiPageWikiLink dbr:Exon .
dbr:Fibroblast_growth_factor_receptor_4 dbo:wikiPageWikiLink dbr:Exon .
dbr:IGLL5 dbo:wikiPageWikiLink dbr:Exon .
dbr:Tiger_eye dbo:wikiPageWikiLink dbr:Exon .
dbr:Methylmalonyl_CoA_epimerase dbo:wikiPageWikiLink dbr:Exon .
dbr:COX15 dbo:wikiPageWikiLink dbr:Exon .
dbr:COX7B dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:CYYR1 dbo:wikiPageWikiLink dbr:Exon .
dbr:Retinaldehyde-binding_protein_1 dbo:wikiPageWikiLink dbr:Exon .
dbr:MFAP2 dbo:wikiPageWikiLink dbr:Exon .
dbr:MTA1 dbo:wikiPageWikiLink dbr:Exon .
dbr:KIAA1797 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:PCDHB15 dbo:wikiPageWikiLink dbr:Exon .
dbr:FAM71F2 dbo:wikiPageWikiLink dbr:Exon .
dbr:Ccdc109b dbo:wikiPageWikiLink dbr:Exon .
dbr:IFFO1 dbo:wikiPageWikiLink dbr:Exon .
dbr:IKBKAP dbo:wikiPageWikiLink dbr:Exon .
dbr:IMMP2L dbo:wikiPageWikiLink dbr:Exon .
dbr:SH2B3 dbo:wikiPageWikiLink dbr:Exon .
dbr:Obscurin dbo:wikiPageWikiLink dbr:Exon .
dbr:PCDH12 dbo:wikiPageWikiLink dbr:Exon .
dbr:ZCCHC6 dbo:wikiPageWikiLink dbr:Exon .
dbr:PCDHB3 dbo:wikiPageWikiLink dbr:Exon .
dbr:NAA15 dbo:wikiPageWikiLink dbr:Exon .
dbr:NDUFAF7 dbo:wikiPageWikiLink dbr:Exon .
dbr:NDUFS1 dbo:wikiPageWikiLink dbr:Exon .
dbr:NDUFS2 dbo:wikiPageWikiLink dbr:Exon .
dbr:NDUFS4 dbo:wikiPageWikiLink dbr:Exon .
dbr:NUBPL dbo:wikiPageWikiLink dbr:Exon .
dbr:SERPINA2 dbo:wikiPageWikiLink dbr:Exon .
dbr:TEDC2 dbo:wikiPageWikiLink dbr:Exon .
dbr:TEX9 dbo:wikiPageWikiLink dbr:Exon .
dbr:TMED5 dbo:wikiPageWikiLink dbr:Exon .
dbr:NDUFAF3 dbo:wikiPageWikiLink dbr:Exon .
dbr:Naa80 dbo:wikiPageWikiLink dbr:Exon .
dbr:PCDHB14 dbo:wikiPageWikiLink dbr:Exon .
dbr:PRR23C dbo:wikiPageWikiLink dbr:Exon .
dbr:ZNF649 dbo:wikiPageWikiLink dbr:Exon .
dbr:UQCRC2 dbo:wikiPageWikiLink dbr:Exon .
dbr:PCDHB10 dbo:wikiPageWikiLink dbr:Exon .
dbr:SDHAF1 dbo:wikiPageWikiLink dbr:Exon .
dbr:MAGEA12 dbo:wikiPageWikiLink dbr:Exon .
dbr:SURF1 dbo:wikiPageWikiLink dbr:Exon .
dbr:TMEM98 dbo:wikiPageWikiLink dbr:Exon .
dbr:Retinitis_pigmentosa_GTPase_regulator dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:GLRX2 dbo:wikiPageWikiLink dbr:Exon .
dbr:OPN1LW dbo:wikiPageWikiLink dbr:Exon .
dbr:TMEM143 dbo:wikiPageWikiLink dbr:Exon .
dbr:PDGFRA dbo:wikiPageWikiLink dbr:Exon .
dbr:GJB1 dbo:wikiPageWikiLink dbr:Exon .
dbr:APOA4 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Growth_hormone-binding_protein dbo:wikiPageWikiLink dbr:Exon .
dbr:Vinculin dbo:wikiPageWikiLink dbr:Exon .
dbr:Sialate_O-acetylesterase dbo:wikiPageWikiLink dbr:Exon .
dbr:NBEAL1 dbo:wikiPageWikiLink dbr:Exon .
dbr:DAZ_protein_family dbo:wikiPageWikiLink dbr:Exon .
dbr:KIAA2013 dbo:wikiPageWikiLink dbr:Exon .
dbr:NUMT dbo:wikiPageWikiLink dbr:Exon .
dbr:C1orf167 dbo:wikiPageWikiLink dbr:Exon .
dbr:Hereditary_leiomyomatosis_and_renal_cell_cancer_syndrome dbo:wikiPageWikiLink dbr:Exon .
dbr:DNA dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Buprenorphine dbo:wikiPageWikiLink dbr:Exon .
dbr:Brain-derived_neurotrophic_factor dbo:wikiPageWikiLink dbr:Exon .
dbr:Vascular_endothelial_growth_factor dbo:wikiPageWikiLink dbr:Exon .
dbr:Protein_biosynthesis dbo:wikiPageWikiLink dbr:Exon .
dbr:DNA_microarray dbo:wikiPageWikiLink dbr:Exon .
dbr:Elastin dbo:wikiPageWikiLink dbr:Exon .
dbr:Dopamine_receptor_D2 dbo:wikiPageWikiLink dbr:Exon .
dbr:Tumor_necrosis_factor dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Anopheles_gambiae dbo:wikiPageWikiLink dbr:Exon .
dbr:Factor_XIII dbo:wikiPageWikiLink dbr:Exon .
dbr:P-selectin dbo:wikiPageWikiLink dbr:Exon .
dbr:Tissue_factor dbo:wikiPageWikiLink dbr:Exon .
dbr:Splice_site_mutation dbo:wikiPageWikiLink dbr:Exon .
dbr:Tachykinin_peptides dbo:wikiPageWikiLink dbr:Exon .
dbr:VPS13B dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Hemoglobin_subunit_beta dbo:wikiPageWikiLink dbr:Exon .
dbr:CYP17A1 dbo:wikiPageWikiLink dbr:Exon .
dbr:Three-finger_protein dbo:wikiPageWikiLink dbr:Exon .
dbr:Glycogen_debranching_enzyme dbo:wikiPageWikiLink dbr:Exon .
dbr:Blue_cone_monochromacy dbo:wikiPageWikiLink dbr:Exon .
dbr:C6orf58 dbo:wikiPageWikiLink dbr:Exon .
dbr:Agouti-signaling_protein dbo:wikiPageWikiLink dbr:Exon .
dbr:C11orf52 dbo:wikiPageWikiLink dbr:Exon .
dbr:ZNF548 dbo:wikiPageWikiLink dbr:Exon .
dbr:Champagne_gene dbo:wikiPageWikiLink dbr:Exon .
dbr:FAM178B dbo:wikiPageWikiLink dbr:Exon .
dbr:SMIM23 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:CD20 dbo:wikiPageWikiLink dbr:Exon .
dbr:SoxC_group dbo:wikiPageWikiLink dbr:Exon .
dbr:Morpholino dbo:wikiPageWikiLink dbr:Exon .
dbr:Complement_receptor_1 dbo:wikiPageWikiLink dbr:Exon .
dbr:CD36 dbo:wikiPageWikiLink dbr:Exon .
dbr:POLR2J2 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:IDH3B dbo:wikiPageWikiLink dbr:Exon .
dbr:RNA-binding_protein dbo:wikiPageWikiLink dbr:Exon .
dbr:Sequence_analysis dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Stromal_cell-derived_factor_1 dbo:wikiPageWikiLink dbr:Exon .
dbr:CFAP157 dbo:wikiPageWikiLink dbr:Exon .
dbr:Toshifumi_Yokota dbo:wikiPageWikiLink dbr:Exon .
dbr:Pax_genes dbo:wikiPageWikiLink dbr:Exon .
dbr:Folliculin dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:GeneMark dbo:wikiPageWikiLink dbr:Exon .
dbr:Bone_morphogenetic_protein_15 dbo:wikiPageWikiLink dbr:Exon .
dbr:TMEM128 dbo:wikiPageWikiLink dbr:Exon .
dbr:Tetratricopeptide_repeat_protein_39B dbo:wikiPageWikiLink dbr:Exon .
dbr:Aldolase_A dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:Microprocessor_complex dbo:wikiPageWikiLink dbr:Exon .
dbr:HIVEP2 dbo:wikiPageWikiLink dbr:Exon .
dbr:Group_I_catalytic_intron dbo:wikiPageWikiLink dbr:Exon .
dbr:NT5C dbo:wikiPageWikiLink dbr:Exon .
dbr:Structure_and_genome_of_HIV dbo:wikiPageWikiLink dbr:Exon .
dbr:CCL28 dbo:wikiPageWikiLink dbr:Exon .
dbr:Splicing_regulatory_element dbo:wikiPageWikiLink dbr:Exon .
dbr:Multicistronic_message dbo:wikiPageWikiLink dbr:Exon .
dbr:PCK2 dbo:wikiPageWikiLink dbr:Exon .
dbr:Intron dbo:wikiPageWikiLink dbr:Exon .
@prefix rdf: .
@prefix owl: .
dbr:Exon rdf:type owl:Thing .
@prefix rdfs: .
dbr:Exon rdfs:label "Ekson"@pl ,
"\u0625\u0643\u0633\u0648\u0646"@ar ,
"Ekson"@in ,
"Eas\u00F3n"@ga ,
"Ex\u00F3"@ca ,
"Exon"@cs ,
"Ekzono"@eo ,
"\uC5D1\uC190"@ko ,
"\u042D\u043A\u0437\u043E\u043D"@ru ,
"Exon"@fr ,
"Exon"@de ,
"Esone"@it ,
"Exon"@nl ,
"Exon"@en ,
"\u5916\u663E\u5B50"@zh ,
"\u0395\u03BE\u03CC\u03BD\u03B9\u03BF"@el ,
"Ex\u00E3o"@pt ,
"\u0415\u043A\u0437\u043E\u043D"@uk ,
"\u30A8\u30AF\u30BD\u30F3"@ja ,
"Ex\u00F3n"@es ,
"Exon"@sv ,
"Exoi"@eu ;
rdfs:comment "Ein Exon (von engl. exon, gebildet von intron und der Vorsilbe ex des Ausdrucks expressed [region]) ist der Teil eines eukaryotischen Gens, der nach Splei\u00DFen (Splicing) erhalten bleibt. Demgegen\u00FCber stehen die Introns (englisch intragenic regions), die beim Splei\u00DFen herausgeschnitten und abgebaut werden. Das typische humane Gen enth\u00E4lt durchschnittlich acht Exons mit einer mittleren L\u00E4nge der internen Exons von 145 Nukleotiden. Introns sind im Durchschnitt mehr als 10-mal so lang, in einigen F\u00E4llen sind sie sogar noch wesentlich l\u00E4nger. Im Vergleich zu den Eukaryoten besteht die DNA von Prokaryoten ausschlie\u00DFlich aus Exons."@de ,
"Ex\u00E3o (portugu\u00EAs europeu) ou \u00C9xon (portugu\u00EAs brasileiro) (derivado do ingl\u00EAs \"expressed regions\") (plural \"ex\u00F5es\") \u00E9 um segmento de DNA de um gene eucari\u00F3tico cujo transcrito sobrevive ao processo de excis\u00E3o (ou splicing ou processamento). Numa mol\u00E9cula de mRNA, um ex\u00E3o pode codificar amino\u00E1cidos de uma prote\u00EDna, noutras mol\u00E9culas de RNA maduro como tRNAs e rRNAs, o ex\u00E3o constitui parte estrutural. Um segmento do gene que tem o respectivo transcrito (RNA) eliminado na excis\u00E3o \u00E9 chamado de \u00EDntron ou intr\u00E3o."@pt ,
"\uC5D1\uC190(Exon)\uC740 DNA \uC5FC\uAE30 \uC11C\uC5F4 \uC911 \uB2E8\uBC31\uC9C8\uC758 \uAD6C\uC131\uC815\uBCF4\uB97C \uB2F4\uACE0 \uC788\uB294 \uBD80\uBD84\uC774\uB2E4. \uC9C4\uD575\uC138\uD3EC\uC758 DNA\uC5D0\uB294 \uC6D0\uD575\uC138\uD3EC\uC758 DNA\uC640 \uB2EC\uB9AC \uC2E4\uC81C\uB85C \uB2E8\uBC31\uC9C8\uC758 \uD569\uC131 \uC815\uBCF4\uB97C \uAC16\uB294 \uBD80\uBD84\uACFC \uADF8\uB807\uC9C0 \uC54A\uC740 \uBD80\uBD84\uC774 \uC11E\uC5EC\uC11C \uC874\uC7AC\uD558\uACE0 \uC788\uB2E4.\uC804\uC790\uC758 \uBD80\uBD84\uC744 \uC5D1\uC190, \uD6C4\uC790\uB97C \uC778\uD2B8\uB860(intron)\uC774\uB77C\uACE0 \uD55C\uB2E4. \uC778\uD2B8\uB860\uC740 \uB2E8\uBC31\uC9C8 \uC804\uC0AC\uB97C \uC2DC\uC791\uD558\uB3C4\uB85D \uC720\uB3C4\uD558\uB294\uD504\uB85C\uBAA8\uD130 \uB4F1 \uC804\uC0AC\uB97C \uB3D5\uB294 \uC815\uBCF4\uB97C \uAC00\uC9C0\uACE0 \uC788\uB2E4. \uB2E8\uBC31\uC9C8\uC5D0 \uB530\uB77C \uC804\uC0AC \uACFC\uC815\uC5D0\uC11C \uC758\uBBF8\uC5C6\uB294 \uBD80\uBD84\uC778 \uC778\uD2B8\uB860\uC744 \uC798\uB77C\uB0B4\uB294 \uACFC\uC815\uC774 \uC77C\uC5B4\uB09C\uB2E4. \uC5D1\uC190\uC758 \uCD1D\uD569\uC744 \uC5D1\uC19C \uC774\uB77C\uACE0 \uD55C\uB2E4."@ko ,
"Ekson adalah bagian dari gen yang akan menyandi bagian dari RNA matang akhir yang dihasilkan oleh gen tersebut setelah intron telah dihilangkan oleh penjalinan RNA (RNA splicing). Istilah ekson mengacu pada urutan DNA dalam gen dan urutan yang sesuai dalam transkrip RNA. Dalam penjalinan RNA, intron dihapus dan ekson secara kovalen bergabung satu sama lain, menghasilkan RNA duta matang. Sama seperti seluruh rangkaian gen yang dimiliki suatu spesies membentuk genom, seluruh rangkaian ekson membentuk ."@in ,
"\u0627\u0644\u0625\u0643\u0633\u0648\u0646 (\u0628\u0627\u0644\u0625\u0646\u062C\u0644\u064A\u0632\u064A\u0629: Exon)\u200F \u0647\u0648 \u0623\u064A \u0642\u0637\u0639\u0629 \u0645\u0646 \u0627\u0644\u062F\u064A \u0627\u0646 \u0627\u064A \u0627\u0644\u062A\u064A \u062A\u0645 \u0646\u0633\u062E\u0647\u0627 \u0644\u062A\u0635\u0628\u062D \u062C\u0632\u0621\u0627 \u0645\u0646 \u0627\u0644\u0631\u0646\u0627 \u0627\u0644\u0645\u0631\u0633\u0627\u0644 \u0627\u0644\u0628\u062F\u0627\u0626\u064A \u0648\u0644\u0627 \u064A\u062A\u0645 \u0627\u0644\u062A\u062E\u0644\u0635 \u0645\u0646\u0647\u0627 \u0639\u0646\u062F \u0645\u0639\u0627\u0644\u062C\u062A\u0647\u060C \u0639\u0644\u0649 \u0639\u0643\u0633 \u0627\u0644\u0625\u0646\u062A\u0631\u0648\u0646 \u0627\u0644\u0630\u064A \u064A\u062A\u0645 \u0627\u0642\u062A\u0637\u0627\u0639\u0647 \u0645\u0646 \u0627\u0644\u0631\u0646\u0627 \u0627\u0644\u0645\u0631\u0633\u0627\u0644 \u0627\u0644\u0628\u062F\u0627\u0626\u064A \u0644\u0644\u062D\u0635\u0648\u0644 \u0639\u0644\u0649 \u0631\u0646\u0627 \u0645\u0631\u0633\u0627\u0644 \u0646\u0627\u0636\u062C. \u0648\u0627\u0636\u0639 \u0627\u0644\u062A\u0633\u0645\u064A\u0629 \u0647\u0648 \u0627\u0644\u0639\u0627\u0644\u0645 \u0648\u0627\u0644\u062A\u0631 \u0643\u064A\u0644\u0628\u0631\u062A \u0641\u064A \u0639\u0627\u0645 1978. \u0645\u0646 \u0627\u0644\u0623\u062E\u0637\u0627\u0621 \u0627\u0644\u0634\u0627\u0626\u0639\u0629 \u0647\u0648 \u0648\u0635\u0641 \u0627\u0644\u0625\u0643\u0633\u0648\u0646\u0627\u062A \u0628\u0623\u0646\u0647\u0627 \u0627\u0644\u062C\u0632\u0621 \u0627\u0644\u0645\u0634\u0641\u0631 \u0644\u0644\u062D\u0645\u0648\u0636 \u0627\u0644\u0623\u0645\u064A\u0646\u064A\u0629 \u0648\u0647\u0630\u0627 \u063A\u064A\u0631 \u0635\u062D\u064A\u062D \u0644\u0623\u0646 \u0627\u0644\u0625\u0643\u0633\u0648\u0646\u0627\u062A \u0623\u064A\u0636\u0627 \u062A\u062D\u0648\u064A \u0639\u0644\u0649 \u0645\u0646\u0627\u0637\u0642 \u063A\u064A\u0631 \u0645\u0634\u0641\u0631\u0629 \u0623\u0645\u0627 \u0627\u0644\u0645\u0646\u0627\u0637\u0642 \u0627\u0644\u0645\u0634\u0641\u0631\u0629 \u0641\u064A \u0627\u0644\u0625\u0643\u0633\u0648\u0646 \u064A\u0633\u0645\u0649 \u0625\u0637\u0627\u0631 \u0627\u0644\u0642\u0631\u0627\u0621\u0629 \u0627\u0644\u0645\u0641\u062A\u0648\u062D."@ar ,
"Seicheamh c\u00F3daithe de n\u00FAicl\u00E9it\u00EDd\u00ED, agus mar sin de bhunph\u00E9ir\u00ED, taobh istigh de gh\u00E9in ar an DNA, scartha \u00F3n gc\u00E9ad eastr\u00F3n eile ag iontr\u00F3n (seicheamh neamhch\u00F3daithe). Tar \u00E9is an ch\u00E9ad tras-scr\u00EDobh \u00F3 gh\u00E9in (an phr\u00EDomhthrascr\u00EDobh) a dh\u00E9anamh, seicheamh comhtheagmhe\u00E1lach de RNA neamhch\u00F3daithe (iontr\u00F3in) is RNA codaithe (eas\u00F3in) a bh\u00EDonn inti. Ansin baintear na hiontr\u00F3in amach, agus spladhs\u00E1iltear na heas\u00F3in le ch\u00E9ile chun an teachtaire-RNA (mRNA) a dh\u00E9anamh. Sain\u00EDonn seicheamh an mRNA an phr\u00F3it\u00E9in. Ascna\u00EDonn an mRNA amach \u00F3n n\u00FAicl\u00E9as do na ribeas\u00F3im sa ch\u00EDteaplasma, \u00E1it a n-aistr\u00EDtear an t-eolas g\u00E9initeach sa seicheamh seo ina phr\u00F3it\u00E9in."@ga ,
"El ex\u00F3n es la regi\u00F3n de un gen que no es separada durante el proceso de corte y empalme y, por tanto, se mantienen en el ARN mensajero maduro. En los genes que codifican una prote\u00EDna, son los exones los que contienen la informaci\u00F3n para producir la prote\u00EDna codificada en el gen. En estos casos, cada ex\u00F3n codifica una porci\u00F3n espec\u00EDfica de la prote\u00EDna completa, de manera que el conjunto de exones forma la regi\u00F3n codificante del gen. En eucariotas los exones de un gen est\u00E1n separados por regiones largas de ADN (llamadas intrones) que no codifican.\u200B \u200B"@es ,
"\u0415\u043A\u0437\u043E\u043D \u2014 \u0434\u0456\u043B\u044F\u043D\u043A\u0430 \u0414\u041D\u041A \u0432 \u043C\u0435\u0436\u0430\u0445 \u0433\u0435\u043D\u0443, \u044F\u043A\u0430 \u043F\u0435\u0440\u0435\u0432\u043E\u0434\u0438\u0442\u044C\u0441\u044F \u0443 \u0437\u0440\u0456\u043B\u0443 \u043C\u043E\u043B\u0435\u043A\u0443\u043B\u0443 \u043C\u0430\u0442\u0440\u0438\u0447\u043D\u043E\u0457 \u0420\u041D\u041A (\u043C\u0420\u041D\u041A) \u0432 \u043F\u0440\u043E\u0446\u0435\u0441\u0430\u0445 \u0442\u0440\u0430\u043D\u0441\u043A\u0440\u0438\u043F\u0446\u0456\u0457 \u0456 \u0441\u043F\u043B\u0430\u0439\u0441\u0438\u043D\u0433\u0443. \u0415\u043A\u0437\u043E\u043D\u0438 \u0431\u0456\u043B\u044C\u0448\u043E\u0441\u0442\u0456 \u0433\u0435\u043D\u0456\u0432 \u0435\u0443\u043A\u0430\u0440\u0456\u043E\u0442\u0456\u0432 \u0456 \u0434\u0435\u044F\u043A\u0438\u0445 \u0433\u0435\u043D\u0456\u0432 \u043F\u0440\u043E\u043A\u0430\u0440\u0456\u043E\u0442\u0456\u0432 \u0440\u043E\u0437\u0434\u0456\u043B\u0435\u043D\u0456 \u0441\u0435\u0433\u043C\u0435\u043D\u0442\u0430\u043C\u0438 \u043D\u0435\u043A\u043E\u0434\u0443\u044E\u0447\u043E\u0457 \u0414\u041D\u041A (\u0456\u043D\u0442\u0440\u043E\u043D\u0430\u043C\u0438), \u044F\u043A\u0456 \u0432\u0438\u0434\u0430\u043B\u044F\u044E\u0442\u044C\u0441\u044F \u043F\u0456\u0434 \u0447\u0430\u0441 \u0441\u043F\u043B\u0430\u0439\u0441\u0438\u043D\u0433\u0443. \u0415\u043A\u0437\u043E\u043D \u043D\u0435\u0441\u0435 \u043A\u043E\u0434\u0443\u044E\u0447\u0443 \u043F\u043E\u0441\u043B\u0456\u0434\u043E\u0432\u043D\u0456\u0441\u0442\u044C \u0434\u043E \u0431\u0456\u043B\u043A\u0430 \u0430\u0431\u043E \u0439\u043E\u0433\u043E \u0447\u0430\u0441\u0442\u0438\u043D\u0438. \u0415\u043A\u0437\u043E\u043D\u0438 \u0440\u043E\u0437\u0434\u0456\u043B\u0435\u043D\u0456 \u043D\u0435\u043A\u043E\u0434\u0443\u044E\u0447\u0438\u043C\u0438 \u043F\u043E\u0441\u043B\u0456\u0434\u043E\u0432\u043D\u043E\u0441\u0442\u044F\u043C\u0438 (\u0456\u043D\u0442\u0440\u043E\u043D\u0430\u043C\u0438). \u0412 \u0435\u0443\u043A\u0430\u0440\u0456\u043E\u0442\u0430\u0445 \u0431\u0456\u043B\u044C\u0448\u0456\u0441\u0442\u044C \u0433\u0435\u043D\u0456\u0432 \u043C\u0430\u044E\u0442\u044C \u0443 \u0441\u0432\u043E\u0454\u043C\u0443 \u0441\u043A\u043B\u0430\u0434\u0456 \u043F\u0435\u0432\u043D\u0443 \u043A\u0456\u043B\u044C\u043A\u0456\u0441\u0442\u044C \u0435\u043A\u0437\u043E\u043D\u0456\u0432. \u0422\u0435\u0440\u043C\u0456\u043D \u00AB\u0435\u043A\u0437\u043E\u043D\u00BB \u0432\u0432\u0456\u0432 1978 \u0440\u043E\u043A\u0443 \u0430\u043C\u0435\u0440\u0438\u043A\u0430\u043D\u0441\u044C\u043A\u0438\u0439 \u0431\u0456\u043E\u0445\u0456\u043C\u0456\u043A \u0412\u043E\u043B\u0442\u0435\u0440 \u0413\u0456\u043B\u0431\u0435\u0440\u0442 (\u0430\u043D\u0433\u043B. Walter Gilbert)."@uk ,
"Een exon (van Engels: expressed region) is het coderend gedeelte van een gen. Het grootste deel van de exons zal uiteindelijk coderen voor het polypeptide dat door het betreffende gen bepaald wordt. De delen van het gen die niet in het uiteindelijke mRNA terechtkomen, worden introns genoemd."@nl ,
"En un gen, un ex\u00F3 \u00E9s cada un dels segments d'ADN que es transcriuen i no s\u00F3n eliminats en la maduraci\u00F3 de l'ARN missatger ARNm. No tots els exons contenen informaci\u00F3 codificadora per prote\u00EFnes, perqu\u00E8 les UTRs 5' i 3' hi estan incloses. Es contraposen als introns, que no contenen informaci\u00F3 codificadora i s\u00ED que s\u00F3n eliminats durant la maduraci\u00F3. El conjunt d'exons en un genoma s'anomena exoma."@ca ,
"Exoia itzulpen prozesuan aminoazidoak kodetzen dituen DNA-ren zatiari deritzo. Introien aldean, exoiak ez dira desagertzen RNA-m-aren heltze prozesuan, eta duten informazio genetikoa adierazten da itzulpenean. Eukariotoen DNA-k proteinak kodetzen dituzten zatiak ditu (exoiak), proteinak kodetzen ez dituzten zatiekin (introiekin) tartekatuak. Prokariotoen genomak, aldiz, ez du introirik. Exoiak \"splicing\" edo RNA-m-aren birdoitze prozesuan kanporatuak ez diren gene baten zatiak dira, RNA-m helduan agertzen direnak. Proteinak sortzeko informazioa dute."@eu ,
"\u0395\u03BE\u03CC\u03BD\u03B9\u03BF (\u03AE \u03B5\u03BE\u03CE\u03BD\u03B9\u03BF) \u03BF\u03BD\u03BF\u03BC\u03AC\u03B6\u03B5\u03C4\u03B1\u03B9 \u03BF\u03C0\u03BF\u03B9\u03BF\u03B4\u03AE\u03C0\u03BF\u03C4\u03B5 \u03BC\u03AD\u03C1\u03BF\u03C2 \u03B5\u03BD\u03CC\u03C2 \u03B3\u03BF\u03BD\u03B9\u03B4\u03AF\u03BF\u03C5 \u03C0\u03BF\u03C5 \u03BA\u03C9\u03B4\u03B9\u03BA\u03BF\u03C0\u03BF\u03B9\u03B5\u03AF \u03AD\u03BD\u03B1 \u03C4\u03BC\u03AE\u03BC\u03B1 \u03C4\u03BF\u03C5 \u03C4\u03B5\u03BB\u03B9\u03BA\u03BF\u03CD \u03CE\u03C1\u03B9\u03BC\u03BF\u03C5 RNA \u03C0\u03BF\u03C5 \u03C0\u03B1\u03C1\u03AC\u03B3\u03B5\u03C4\u03B1\u03B9 \u03B1\u03C0\u03CC \u03B1\u03C5\u03C4\u03CC \u03C4\u03BF \u03B3\u03BF\u03BD\u03AF\u03B4\u03B9\u03BF \u03BC\u03B5\u03C4\u03AC \u03C4\u03B7\u03BD \u03B1\u03C6\u03B1\u03AF\u03C1\u03B5\u03C3\u03B7 \u03C4\u03C9\u03BD \u03B9\u03BD\u03C4\u03C1\u03BF\u03BD\u03AF\u03C9\u03BD \u03BC\u03AD\u03C3\u03C9 \u03C4\u03BF\u03C5 \u03BC\u03B1\u03C4\u03AF\u03C3\u03BC\u03B1\u03C4\u03BF\u03C2 \u03C4\u03BF\u03C5 RNA. \u039F \u03CC\u03C1\u03BF\u03C2 \u03B5\u03BE\u03CC\u03BD\u03B9\u03BF \u03B1\u03BD\u03B1\u03C6\u03AD\u03C1\u03B5\u03C4\u03B1\u03B9 \u03C4\u03CC\u03C3\u03BF \u03C3\u03C4\u03B7\u03BD \u03B1\u03BB\u03BB\u03B7\u03BB\u03BF\u03C5\u03C7\u03AF\u03B1 DNA \u03B5\u03BD\u03C4\u03CC\u03C2 \u03B5\u03BD\u03CC\u03C2 \u03B3\u03BF\u03BD\u03B9\u03B4\u03AF\u03BF\u03C5 \u03CC\u03C3\u03BF \u03BA\u03B1\u03B9 \u03C3\u03C4\u03B7\u03BD \u03B1\u03BD\u03C4\u03AF\u03C3\u03C4\u03BF\u03B9\u03C7\u03B7 \u03B1\u03BB\u03BB\u03B7\u03BB\u03BF\u03C5\u03C7\u03AF\u03B1 \u03C3\u03C4\u03B1 RNA \u03BC\u03B5\u03C4\u03AC\u03B3\u03C1\u03B1\u03C6\u03B1 \u03C0\u03BF\u03C5 \u03C0\u03C1\u03BF\u03BA\u03CD\u03C0\u03C4\u03BF\u03C5\u03BD \u03B1\u03C0\u03CC \u03B1\u03C5\u03C4\u03CC. \u039A\u03B1\u03C4\u03AC \u03C4\u03BF \u03BC\u03AC\u03C4\u03B9\u03C3\u03BC\u03B1 \u03C4\u03BF\u03C5 RNA, \u03C4\u03B1 \u03B9\u03BD\u03C4\u03C1\u03CC\u03BD\u03B9\u03B1 \u03B1\u03C0\u03BF\u03BC\u03B1\u03BA\u03C1\u03CD\u03BD\u03BF\u03BD\u03C4\u03B1\u03B9 \u03BA\u03B1\u03B9 \u03C4\u03B1 \u03B5\u03BE\u03CC\u03BD\u03B9\u03B1 \u03C3\u03C5\u03BD\u03B4\u03AD\u03BF\u03BD\u03C4\u03B1\u03B9 \u03BF\u03BC\u03BF\u03B9\u03BF\u03C0\u03BF\u03BB\u03B9\u03BA\u03AC \u03BC\u03B5\u03C4\u03B1\u03BE\u03CD \u03C4\u03BF\u03C5\u03C2 \u03B3\u03B9\u03B1 \u03C4\u03B7 \u03B4\u03B7\u03BC\u03B9\u03BF\u03C5\u03C1\u03B3\u03AF\u03B1 \u03C4\u03BF\u03C5 \u03CE\u03C1\u03B9\u03BC\u03BF\u03C5 \u03B1\u03B3\u03B3\u03B5\u03BB\u03B9\u03B1\u03C6\u03CC\u03C1\u03BF\u03C5 RNA. \u0391\u03BA\u03C1\u03B9\u03B2\u03CE\u03C2 \u03CC\u03C0\u03C9\u03C2 \u03BF\u03BB\u03CC\u03BA\u03BB\u03B7\u03C1\u03BF \u03C4\u03BF \u03C3\u03CD\u03BD\u03BF\u03BB\u03BF \u03C4\u03C9\u03BD \u03B3\u03BF\u03BD\u03B9\u03B4\u03AF\u03C9\u03BD \u03B5\u03BD\u03CC\u03C2 \u03B5\u03AF\u03B4\u03BF\u03C5\u03C2 \u03B1\u03C0\u03BF\u03C4\u03B5\u03BB\u03B5\u03AF \u03C4\u03BF \u03B3\u03BF\u03BD\u03B9\u03B4\u03AF\u03C9\u03BC\u03B1, \u03BF\u03BB\u03CC\u03BA\u03BB\u03B7\u03C1\u03BF \u03C4\u03BF \u03C3\u03CD\u03BD\u03BF\u03BB\u03BF \u03C4\u03C9\u03BD \u03B5\u03BE\u03BF\u03BD\u03AF\u03C9\u03BD \u03B1\u03C0\u03BF\u03C4\u03B5\u03BB\u03B5\u03AF \u03C4\u03BF ."@el ,
"Ekson, egzon, sekwencja koduj\u0105ca \u2013 odcinek genu koduj\u0105cy sekwencj\u0119 aminokwas\u00F3w w cz\u0105steczce bia\u0142ka. Poszczeg\u00F3lne eksony oddzielone s\u0105 od siebie intronami (sekwencjami niekoduj\u0105cymi) i wyst\u0119puj\u0105 wy\u0142\u0105cznie w kom\u00F3rkach eukariotycznych."@pl ,
"\u5916\u663E\u5B50\uFF08\u82F1\u8A9E\uFF1AExon\uFF09\u662F\u771F\u6838\u751F\u7269\u57FA\u56E0\u7684\u4E00\u90E8\u5206\uFF0C\u5B83\u5728\u526A\u63A5\u540E\u4ECD\u4F1A\u88AB\u4FDD\u5B58\u4E0B\u6765\uFF0C\u5E76\u53EF\u5728\u86CB\u767D\u8D28\u751F\u7269\u5408\u6210\u8FC7\u7A0B\u4E2D\u88AB\u8868\u8FBE\u4E3A\u86CB\u767D\u8D28\u3002 \u800C\u5185\u542B\u5B50\u5219\u4F1A\u5728\u526A\u63A5\u8FC7\u7A0B\u4E2D\u88AB\u9664\u53BB\u3002 \u6240\u6709\u7684\u5916\u663E\u5B50\u4E00\u540C\u7EC4\u6210\u4E86\u9057\u4F20\u4FE1\u606F\uFF0C\u8BE5\u4FE1\u606F\u4F1A\u4F53\u73B0\u5728\u86CB\u767D\u8D28\u4E0A\u3002 \u526A\u63A5\u65B9\u5F0F\u5E76\u4E0D\u662F\u552F\u4E00\u7684\uFF08\u53C2\u770B\u66FF\u4EE3\u526A\u63A5\uFF09\uFF0C\u6240\u4EE5\u5916\u663E\u5B50\u53EA\u80FD\u5728\u6210\u4F53mRNA\u4E2D\u88AB\u770B\u51FA\u3002\u5373\u4F7F\u662F\u4F7F\u7528\u751F\u7269\u4FE1\u606F\u5B66\u65B9\u6CD5\uFF0C\u8981\u7CBE\u786E\u9884\u6D4B\u5916\u663E\u5B50\u7684\u4F4D\u7F6E\u4E5F\u662F\u975E\u5E38\u56F0\u96BE\u7684\u3002 \u771F\u6838\u751F\u7269\u7684\u57FA\u56E0\uFF0C\u5176\u7EBF\u6027\u8868\u8FBE\u88AB\u5185\u542B\u5B50\u963B\u65AD\uFF0C\u8FD9\u5C31\u662F\u6240\u8C13\u7684\uFF08split gene\uFF09\uFF0C\u8BE5\u73B0\u8C61\u7684\u53D1\u73B0\u8005\u7406\u5BDF\u00B7\u7F85\u4F2F\u8328(Richard J. Roberts)\u548C\u83F2\u5229\u666E\u00B7\u590F\u666E(Phillip A. Sharp)\u83B7\u5F97\u4E861993\u5E74\u8BFA\u8D1D\u5C14\u751F\u7406\u5B66\u6216\u533B\u5B66\u5956\u3002 \u5728\u53CD\u5F0F\u526A\u63A5\u4E2D\uFF0C\u4E0D\u540CmRNA\u7684\u5916\u663E\u5B50\u53EF\u4EE5\u88AB\u63A5\u5408\u5728\u4E00\u8D77\u3002 \u4E00\u4E2A\u5916\u663E\u5B50\u7ECF\u5E38\u7F16\u7801\u86CB\u767D\u7684\u4E00\u4E2A\u86CB\u767D\u8D28\u7ED3\u6784\u57DF\u3002"@zh ,
"En exon \u00E4r en del av nukleotid-sekvensen i DNA-molekylen i en gen som utg\u00F6r kod f\u00F6r delar av det slutliga proteinet f\u00F6r genen. Hos eukaryoter f\u00F6rekommer dessutom ofta att delar i sekvensen, s.k. introner, redigeras bort genom splitsning innan proteinet tillverkas."@sv ,
"\u30A8\u30AF\u30BD\u30F3\uFF08\u82F1: exon\u3001\u30A8\u30AD\u30BD\u30F3\u3068\u8868\u8A18\u3055\u308C\u308B\u5834\u5408\u3082\u3042\u308B\uFF09\u306F\u3001\u30C7\u30AA\u30AD\u30B7\u30EA\u30DC\u6838\u9178\uFF08DNA\uFF09\u307E\u305F\u306F\u30EA\u30DC\u6838\u9178\uFF08RNA\uFF09\u306E\u5869\u57FA\u914D\u5217\u4E2D\u3067\u6210\u719FmRNA \u306B\u6B8B\u308B\u90E8\u5206\u3092\u6307\u3059\u3002 \u4E00\u822C\u306B\u771F\u6838\u751F\u7269\u3067\u306F\u3001DNA \u304B\u3089\u8EE2\u5199\u3055\u308C\u305FmRNA\u524D\u99C6\u4F53\u306F\u30B9\u30D7\u30E9\u30A4\u30B7\u30F3\u30B0\u53CD\u5FDC\u306B\u3088\u3063\u3066\u9577\u3055\u304C\u7E2E\u5C0F\u3055\u308C\u308B\u3002\u30B9\u30D7\u30E9\u30A4\u30B7\u30F3\u30B0\u3067\u6B8B\u308B\u90E8\u4F4D\u304C\u30A8\u30AF\u30BD\u30F3\u3068\u547C\u3070\u308C\u3001\u9664\u53BB\u3055\u308C\u308B\u90E8\u4F4D\u304C\u30A4\u30F3\u30C8\u30ED\u30F3\u3068\u547C\u3070\u308C\u308B\u3002\u30A8\u30AF\u30BD\u30F3\u306F\u30BF\u30F3\u30D1\u30AF\u8CEA\u306B\u7FFB\u8A33\u3055\u308C\u308B\u30B3\u30FC\u30C7\u30A3\u30F3\u30B0\u9818\u57DF\uFF08CDS\uFF09\u3068\u3001\u7FFB\u8A33\u3055\u308C\u306A\u3044\u975E\u7FFB\u8A33\u9818\u57DF\uFF08UTR\uFF09\u3067\u69CB\u6210\u3055\u308C\u308B\u3002UTR \u306F\u30B3\u30FC\u30C7\u30A3\u30F3\u30B0\u9818\u57DF\u3092\u631F\u3093\u3067\u5B58\u5728\u3057\u3001\u958B\u59CB\u30B3\u30C9\u30F3\u3088\u308A\u4E0A\u6D41\u3092 5' UTR\u3001\u7D42\u6B62\u30B3\u30C9\u30F3\u3088\u308A\u4E0B\u6D41\u3092 3' UTR \u3068\u547C\u3076\u3002 \u307E\u305F\u30BF\u30F3\u30D1\u30AF\u8CEA\u3092\u30B3\u30FC\u30C9\u3057\u306A\u3044\u8EE2\u79FBRNA \u3082\u30B9\u30D7\u30E9\u30A4\u30B7\u30F3\u30B0\u3092\u53D7\u3051\u3066RNA \u304C\u6210\u719F\u3059\u308B\u305F\u3081\u30A8\u30AF\u30BD\u30F3\u304C\u5B58\u5728\u3059\u308B\u3002 \u30A8\u30AF\u30BD\u30F3\u306E\u7D44\u307F\u5408\u308F\u305B\u306E\u5909\u5316\u306B\u3088\u3063\u3066\u65B0\u305F\u306A\u907A\u4F1D\u5B50\u304C\u4F5C\u3089\u308C\u308B\u3053\u3068\u304C\u3001\u751F\u7269\u306E\u9032\u5316\u306B\u91CD\u8981\u306A\u5F79\u5272\u3092\u62C5\u3063\u3066\u3044\u308B\u3068\u3044\u3046\u5B66\u8AAC\u304C\u3042\u308A\u300C\u30A8\u30AF\u30BD\u30F3\u30B7\u30E3\u30C3\u30D5\u30EA\u30F3\u30B0\u4EEE\u8AAC\u300D\u3068\u547C\u3070\u308C\u308B\u3002\u3053\u308C\u306F\u30BF\u30F3\u30D1\u30AF\u8CEA\u306E\u6A5F\u80FD\u5358\u4F4D\u3067\u3042\u308B\u300C\u30E2\u30B8\u30E5\u30FC\u30EB\u300D\u304C\u30A8\u30AF\u30BD\u30F3\u3068\u5BFE\u5FDC\u3057\u3066\u3044\u308B\u3053\u3068\u304C\u591A\u3044\u3053\u3068\u3092\u6839\u62E0\u3068\u3057\u3066\u3044\u308B\u3002"@ja ,
"Gli esoni costituiscono, insieme agli introni, la porzione di un gene (eucariotico o di archeobatteri) che viene trascritta dalle RNA polimerasi durante il processo di trascrizione.Gli esoni, in seguito al processo di splicing del trascritto primario, detto hnRNA, si ritrovano negli mRNA maturi; talvolta il trascritto primario pu\u00F2 subire un processo di splicing alternativo in seguito al quale, negli mRNA maturi, si possono ritrovare anche gli introni o parti di essi."@it ,
"Dans les g\u00E8nes des organismes eucaryotes, les exons sont les segments d\u2019un pr\u00E9curseur ARN qui sont conserv\u00E9s dans l\u2019ARN apr\u00E8s \u00E9pissage et que l'on retrouve dans l'ARN mature dans le cytoplasme. Les segments du pr\u00E9curseur ARN qui sont \u00E9limin\u00E9s lors de l'\u00E9pissage s'appellent par opposition des introns. On trouve principalement les exons dans les ARN messagers (ARNm) codant des prot\u00E9ines. Certains ARNm peuvent parfois subir un processus d'\u00E9pissage alternatif, dans lequel un ou plusieurs exons peuvent \u00EAtre excis\u00E9s ou certains introns conserv\u00E9s dans de rares cas."@fr ,
"En genetiko, ekzono estas nukleotida sekvenco en geno, kiu enkodigas parton de la matura ribonuklea acido (RNA) farita de tiu geno, post splisado kaj forigo de la intronoj. Alivorte, la ekzono estas la mala koncepto de la introno."@eo ,
"Exon je jak\u00E1koli \u010D\u00E1st genu (\u010D\u00E1st sekvence nukleov\u00E9 kyseliny DNA nebo RNA), kter\u00E1 bude tvo\u0159it \u010D\u00E1st kone\u010Dn\u00E9 zral\u00E9 mRNA produkovan\u00E9 t\u00EDmto genem v procesu zvan\u00E9m transkripce. Podle t\u00E9to sekvence, kter\u00E1 se naz\u00FDv\u00E1 k\u00F3duj\u00EDc\u00ED sekvence, se obvykle tvo\u0159\u00ED b\u00EDlkovina v procesu zvan\u00E9m translace. Krom\u011B exonu obsahuje sekvence DNA introny, kter\u00E9 jsou tak\u00E9 sou\u010D\u00E1st\u00ED genu. V procesu splicingu se introny z pre-mRNA vyst\u0159\u00EDhaj\u00ED, \u010D\u00EDm\u017E vznik\u00E1 mRNA, podle n\u00ED\u017E je nakonec tvo\u0159ena b\u00EDlkovina."@cs ,
"\u042D\u043A\u0437\u043E\u043D\u044B (\u043E\u0442 \u0430\u043D\u0433\u043B. ex(pressi)on \u2014 \u0432\u044B\u0440\u0430\u0436\u0435\u043D\u0438\u0435) \u2014 \u0443\u0447\u0430\u0441\u0442\u043A\u0438 \u0414\u041D\u041A, \u043A\u043E\u043F\u0438\u0438 \u043A\u043E\u0442\u043E\u0440\u044B\u0445 \u0441\u043E\u0441\u0442\u0430\u0432\u043B\u044F\u044E\u0442 \u0437\u0440\u0435\u043B\u0443\u044E \u0420\u041D\u041A. \u041F\u043E \u043C\u043D\u0435\u043D\u0438\u044E \u043D\u0435\u043A\u043E\u0442\u043E\u0440\u044B\u0445 \u0438\u0441\u0441\u043B\u0435\u0434\u043E\u0432\u0430\u0442\u0435\u043B\u0435\u0439 \u044D\u043A\u0437\u043E\u043D\u044B \u0441\u043E\u043E\u0442\u0432\u0435\u0442\u0441\u0442\u0432\u0443\u044E\u0442 \u0434\u043E\u043C\u0435\u043D\u0430\u043C (\u0441\u0442\u0440\u0443\u043A\u0442\u0443\u0440\u043D\u043E \u0430\u0432\u0442\u043E\u043D\u043E\u043C\u043D\u044B\u043C \u043E\u0431\u043B\u0430\u0441\u0442\u044F\u043C) \u0432 \u0431\u0435\u043B\u043A\u0435 \u0438 \u044F\u0432\u043B\u044F\u044E\u0442\u0441\u044F \u043F\u0435\u0440\u0432\u0438\u0447\u043D\u044B\u043C\u0438 \u0433\u0435\u043D\u0435\u0442\u0438\u0447\u0435\u0441\u043A\u0438\u043C\u0438 \u0435\u0434\u0438\u043D\u0438\u0446\u0430\u043C\u0438, \u043F\u0435\u0440\u0435\u043A\u043E\u043C\u0431\u0438\u043D\u0430\u0446\u0438\u044F \u043A\u043E\u0442\u043E\u0440\u044B\u0445 \u043F\u0440\u0438\u0432\u043E\u0434\u0438\u0442 \u043A \u0432\u043E\u0437\u043D\u0438\u043A\u043D\u043E\u0432\u0435\u043D\u0438\u044E \u0432 \u0445\u043E\u0434\u0435 \u044D\u0432\u043E\u043B\u044E\u0446\u0438\u0438 \u043D\u043E\u0432\u044B\u0445 \u0433\u0435\u043D\u043E\u0432 \u0438 \u0441\u043E\u043E\u0442\u0432\u0435\u0442\u0441\u0442\u0432\u0435\u043D\u043D\u043E \u043D\u043E\u0432\u044B\u0445 \u0431\u0435\u043B\u043A\u043E\u0432. \u042D\u043A\u0437\u043E\u043D\u044B \u0447\u0435\u0440\u0435\u0434\u0443\u044E\u0442\u0441\u044F \u0432 \u0441\u0442\u0440\u0443\u043A\u0442\u0443\u0440\u0435 \u0433\u0435\u043D\u0430 \u0441 \u0434\u0440\u0443\u0433\u0438\u043C\u0438 \u0444\u0440\u0430\u0433\u043C\u0435\u043D\u0442\u0430\u043C\u0438 \u2014 \u0438\u043D\u0442\u0440\u043E\u043D\u0430\u043C\u0438. \u041F\u0440\u0438 \u0430\u043B\u044C\u0442\u0435\u0440\u043D\u0430\u0442\u0438\u0432\u043D\u043E\u043C \u0441\u043F\u043B\u0430\u0439\u0441\u0438\u043D\u0433\u0435 \u043D\u0435\u043A\u043E\u0442\u043E\u0440\u044B\u0435 \u044D\u043A\u0437\u043E\u043D\u044B \u0443\u0434\u0430\u043B\u044F\u044E\u0442\u0441\u044F \u0438\u0437 \u0437\u0440\u0435\u043B\u043E\u0439 \u0420\u041D\u041A. \u0417\u0440\u0435\u043B\u0430\u044F \u0420\u041D\u041A \u043C\u043E\u0436\u0435\u0442 \u043E\u0431\u0440\u0430\u0437\u043E\u0432\u0430\u0442\u044C\u0441\u044F \u0432 \u0440\u0435\u0437\u0443\u043B\u044C\u0442\u0430\u0442\u0435:"@ru ,
"An exon is any part of a gene that will form a part of the final mature RNA produced by that gene after introns have been removed by RNA splicing. The term exon refers to both the DNA sequence within a gene and to the corresponding sequence in RNA transcripts. In RNA splicing, introns are removed and exons are covalently joined to one another as part of generating the mature RNA. Just as the entire set of genes for a species constitutes the genome, the entire set of exons constitutes the exome."@en ;
foaf:depiction ,
.
@prefix dcterms: .
@prefix dbc: .
dbr:Exon dcterms:subject dbc:Spliceosome ,
dbc:RNA_splicing ,
dbc:DNA ;
dbo:abstract "\uC5D1\uC190(Exon)\uC740 DNA \uC5FC\uAE30 \uC11C\uC5F4 \uC911 \uB2E8\uBC31\uC9C8\uC758 \uAD6C\uC131\uC815\uBCF4\uB97C \uB2F4\uACE0 \uC788\uB294 \uBD80\uBD84\uC774\uB2E4. \uC9C4\uD575\uC138\uD3EC\uC758 DNA\uC5D0\uB294 \uC6D0\uD575\uC138\uD3EC\uC758 DNA\uC640 \uB2EC\uB9AC \uC2E4\uC81C\uB85C \uB2E8\uBC31\uC9C8\uC758 \uD569\uC131 \uC815\uBCF4\uB97C \uAC16\uB294 \uBD80\uBD84\uACFC \uADF8\uB807\uC9C0 \uC54A\uC740 \uBD80\uBD84\uC774 \uC11E\uC5EC\uC11C \uC874\uC7AC\uD558\uACE0 \uC788\uB2E4.\uC804\uC790\uC758 \uBD80\uBD84\uC744 \uC5D1\uC190, \uD6C4\uC790\uB97C \uC778\uD2B8\uB860(intron)\uC774\uB77C\uACE0 \uD55C\uB2E4. \uC778\uD2B8\uB860\uC740 \uB2E8\uBC31\uC9C8 \uC804\uC0AC\uB97C \uC2DC\uC791\uD558\uB3C4\uB85D \uC720\uB3C4\uD558\uB294\uD504\uB85C\uBAA8\uD130 \uB4F1 \uC804\uC0AC\uB97C \uB3D5\uB294 \uC815\uBCF4\uB97C \uAC00\uC9C0\uACE0 \uC788\uB2E4. \uB2E8\uBC31\uC9C8\uC5D0 \uB530\uB77C \uC804\uC0AC \uACFC\uC815\uC5D0\uC11C \uC758\uBBF8\uC5C6\uB294 \uBD80\uBD84\uC778 \uC778\uD2B8\uB860\uC744 \uC798\uB77C\uB0B4\uB294 \uACFC\uC815\uC774 \uC77C\uC5B4\uB09C\uB2E4. \uC5D1\uC190\uC758 \uCD1D\uD569\uC744 \uC5D1\uC19C \uC774\uB77C\uACE0 \uD55C\uB2E4."@ko ,
"\u30A8\u30AF\u30BD\u30F3\uFF08\u82F1: exon\u3001\u30A8\u30AD\u30BD\u30F3\u3068\u8868\u8A18\u3055\u308C\u308B\u5834\u5408\u3082\u3042\u308B\uFF09\u306F\u3001\u30C7\u30AA\u30AD\u30B7\u30EA\u30DC\u6838\u9178\uFF08DNA\uFF09\u307E\u305F\u306F\u30EA\u30DC\u6838\u9178\uFF08RNA\uFF09\u306E\u5869\u57FA\u914D\u5217\u4E2D\u3067\u6210\u719FmRNA \u306B\u6B8B\u308B\u90E8\u5206\u3092\u6307\u3059\u3002 \u4E00\u822C\u306B\u771F\u6838\u751F\u7269\u3067\u306F\u3001DNA \u304B\u3089\u8EE2\u5199\u3055\u308C\u305FmRNA\u524D\u99C6\u4F53\u306F\u30B9\u30D7\u30E9\u30A4\u30B7\u30F3\u30B0\u53CD\u5FDC\u306B\u3088\u3063\u3066\u9577\u3055\u304C\u7E2E\u5C0F\u3055\u308C\u308B\u3002\u30B9\u30D7\u30E9\u30A4\u30B7\u30F3\u30B0\u3067\u6B8B\u308B\u90E8\u4F4D\u304C\u30A8\u30AF\u30BD\u30F3\u3068\u547C\u3070\u308C\u3001\u9664\u53BB\u3055\u308C\u308B\u90E8\u4F4D\u304C\u30A4\u30F3\u30C8\u30ED\u30F3\u3068\u547C\u3070\u308C\u308B\u3002\u30A8\u30AF\u30BD\u30F3\u306F\u30BF\u30F3\u30D1\u30AF\u8CEA\u306B\u7FFB\u8A33\u3055\u308C\u308B\u30B3\u30FC\u30C7\u30A3\u30F3\u30B0\u9818\u57DF\uFF08CDS\uFF09\u3068\u3001\u7FFB\u8A33\u3055\u308C\u306A\u3044\u975E\u7FFB\u8A33\u9818\u57DF\uFF08UTR\uFF09\u3067\u69CB\u6210\u3055\u308C\u308B\u3002UTR \u306F\u30B3\u30FC\u30C7\u30A3\u30F3\u30B0\u9818\u57DF\u3092\u631F\u3093\u3067\u5B58\u5728\u3057\u3001\u958B\u59CB\u30B3\u30C9\u30F3\u3088\u308A\u4E0A\u6D41\u3092 5' UTR\u3001\u7D42\u6B62\u30B3\u30C9\u30F3\u3088\u308A\u4E0B\u6D41\u3092 3' UTR \u3068\u547C\u3076\u3002 \u307E\u305F\u30BF\u30F3\u30D1\u30AF\u8CEA\u3092\u30B3\u30FC\u30C9\u3057\u306A\u3044\u8EE2\u79FBRNA \u3082\u30B9\u30D7\u30E9\u30A4\u30B7\u30F3\u30B0\u3092\u53D7\u3051\u3066RNA \u304C\u6210\u719F\u3059\u308B\u305F\u3081\u30A8\u30AF\u30BD\u30F3\u304C\u5B58\u5728\u3059\u308B\u3002 \u30A8\u30AF\u30BD\u30F3\u306E\u7D44\u307F\u5408\u308F\u305B\u306E\u5909\u5316\u306B\u3088\u3063\u3066\u65B0\u305F\u306A\u907A\u4F1D\u5B50\u304C\u4F5C\u3089\u308C\u308B\u3053\u3068\u304C\u3001\u751F\u7269\u306E\u9032\u5316\u306B\u91CD\u8981\u306A\u5F79\u5272\u3092\u62C5\u3063\u3066\u3044\u308B\u3068\u3044\u3046\u5B66\u8AAC\u304C\u3042\u308A\u300C\u30A8\u30AF\u30BD\u30F3\u30B7\u30E3\u30C3\u30D5\u30EA\u30F3\u30B0\u4EEE\u8AAC\u300D\u3068\u547C\u3070\u308C\u308B\u3002\u3053\u308C\u306F\u30BF\u30F3\u30D1\u30AF\u8CEA\u306E\u6A5F\u80FD\u5358\u4F4D\u3067\u3042\u308B\u300C\u30E2\u30B8\u30E5\u30FC\u30EB\u300D\u304C\u30A8\u30AF\u30BD\u30F3\u3068\u5BFE\u5FDC\u3057\u3066\u3044\u308B\u3053\u3068\u304C\u591A\u3044\u3053\u3068\u3092\u6839\u62E0\u3068\u3057\u3066\u3044\u308B\u3002"@ja ,
"\u0415\u043A\u0437\u043E\u043D \u2014 \u0434\u0456\u043B\u044F\u043D\u043A\u0430 \u0414\u041D\u041A \u0432 \u043C\u0435\u0436\u0430\u0445 \u0433\u0435\u043D\u0443, \u044F\u043A\u0430 \u043F\u0435\u0440\u0435\u0432\u043E\u0434\u0438\u0442\u044C\u0441\u044F \u0443 \u0437\u0440\u0456\u043B\u0443 \u043C\u043E\u043B\u0435\u043A\u0443\u043B\u0443 \u043C\u0430\u0442\u0440\u0438\u0447\u043D\u043E\u0457 \u0420\u041D\u041A (\u043C\u0420\u041D\u041A) \u0432 \u043F\u0440\u043E\u0446\u0435\u0441\u0430\u0445 \u0442\u0440\u0430\u043D\u0441\u043A\u0440\u0438\u043F\u0446\u0456\u0457 \u0456 \u0441\u043F\u043B\u0430\u0439\u0441\u0438\u043D\u0433\u0443. \u0415\u043A\u0437\u043E\u043D\u0438 \u0431\u0456\u043B\u044C\u0448\u043E\u0441\u0442\u0456 \u0433\u0435\u043D\u0456\u0432 \u0435\u0443\u043A\u0430\u0440\u0456\u043E\u0442\u0456\u0432 \u0456 \u0434\u0435\u044F\u043A\u0438\u0445 \u0433\u0435\u043D\u0456\u0432 \u043F\u0440\u043E\u043A\u0430\u0440\u0456\u043E\u0442\u0456\u0432 \u0440\u043E\u0437\u0434\u0456\u043B\u0435\u043D\u0456 \u0441\u0435\u0433\u043C\u0435\u043D\u0442\u0430\u043C\u0438 \u043D\u0435\u043A\u043E\u0434\u0443\u044E\u0447\u043E\u0457 \u0414\u041D\u041A (\u0456\u043D\u0442\u0440\u043E\u043D\u0430\u043C\u0438), \u044F\u043A\u0456 \u0432\u0438\u0434\u0430\u043B\u044F\u044E\u0442\u044C\u0441\u044F \u043F\u0456\u0434 \u0447\u0430\u0441 \u0441\u043F\u043B\u0430\u0439\u0441\u0438\u043D\u0433\u0443. \u0415\u043A\u0437\u043E\u043D \u043D\u0435\u0441\u0435 \u043A\u043E\u0434\u0443\u044E\u0447\u0443 \u043F\u043E\u0441\u043B\u0456\u0434\u043E\u0432\u043D\u0456\u0441\u0442\u044C \u0434\u043E \u0431\u0456\u043B\u043A\u0430 \u0430\u0431\u043E \u0439\u043E\u0433\u043E \u0447\u0430\u0441\u0442\u0438\u043D\u0438. \u0415\u043A\u0437\u043E\u043D\u0438 \u0440\u043E\u0437\u0434\u0456\u043B\u0435\u043D\u0456 \u043D\u0435\u043A\u043E\u0434\u0443\u044E\u0447\u0438\u043C\u0438 \u043F\u043E\u0441\u043B\u0456\u0434\u043E\u0432\u043D\u043E\u0441\u0442\u044F\u043C\u0438 (\u0456\u043D\u0442\u0440\u043E\u043D\u0430\u043C\u0438). \u0412 \u0435\u0443\u043A\u0430\u0440\u0456\u043E\u0442\u0430\u0445 \u0431\u0456\u043B\u044C\u0448\u0456\u0441\u0442\u044C \u0433\u0435\u043D\u0456\u0432 \u043C\u0430\u044E\u0442\u044C \u0443 \u0441\u0432\u043E\u0454\u043C\u0443 \u0441\u043A\u043B\u0430\u0434\u0456 \u043F\u0435\u0432\u043D\u0443 \u043A\u0456\u043B\u044C\u043A\u0456\u0441\u0442\u044C \u0435\u043A\u0437\u043E\u043D\u0456\u0432. \u0422\u0435\u0440\u043C\u0456\u043D \u00AB\u0435\u043A\u0437\u043E\u043D\u00BB \u0432\u0432\u0456\u0432 1978 \u0440\u043E\u043A\u0443 \u0430\u043C\u0435\u0440\u0438\u043A\u0430\u043D\u0441\u044C\u043A\u0438\u0439 \u0431\u0456\u043E\u0445\u0456\u043C\u0456\u043A \u0412\u043E\u043B\u0442\u0435\u0440 \u0413\u0456\u043B\u0431\u0435\u0440\u0442 (\u0430\u043D\u0433\u043B. Walter Gilbert)."@uk ,
"Seicheamh c\u00F3daithe de n\u00FAicl\u00E9it\u00EDd\u00ED, agus mar sin de bhunph\u00E9ir\u00ED, taobh istigh de gh\u00E9in ar an DNA, scartha \u00F3n gc\u00E9ad eastr\u00F3n eile ag iontr\u00F3n (seicheamh neamhch\u00F3daithe). Tar \u00E9is an ch\u00E9ad tras-scr\u00EDobh \u00F3 gh\u00E9in (an phr\u00EDomhthrascr\u00EDobh) a dh\u00E9anamh, seicheamh comhtheagmhe\u00E1lach de RNA neamhch\u00F3daithe (iontr\u00F3in) is RNA codaithe (eas\u00F3in) a bh\u00EDonn inti. Ansin baintear na hiontr\u00F3in amach, agus spladhs\u00E1iltear na heas\u00F3in le ch\u00E9ile chun an teachtaire-RNA (mRNA) a dh\u00E9anamh. Sain\u00EDonn seicheamh an mRNA an phr\u00F3it\u00E9in. Ascna\u00EDonn an mRNA amach \u00F3n n\u00FAicl\u00E9as do na ribeas\u00F3im sa ch\u00EDteaplasma, \u00E1it a n-aistr\u00EDtear an t-eolas g\u00E9initeach sa seicheamh seo ina phr\u00F3it\u00E9in."@ga ,
"\u5916\u663E\u5B50\uFF08\u82F1\u8A9E\uFF1AExon\uFF09\u662F\u771F\u6838\u751F\u7269\u57FA\u56E0\u7684\u4E00\u90E8\u5206\uFF0C\u5B83\u5728\u526A\u63A5\u540E\u4ECD\u4F1A\u88AB\u4FDD\u5B58\u4E0B\u6765\uFF0C\u5E76\u53EF\u5728\u86CB\u767D\u8D28\u751F\u7269\u5408\u6210\u8FC7\u7A0B\u4E2D\u88AB\u8868\u8FBE\u4E3A\u86CB\u767D\u8D28\u3002 \u800C\u5185\u542B\u5B50\u5219\u4F1A\u5728\u526A\u63A5\u8FC7\u7A0B\u4E2D\u88AB\u9664\u53BB\u3002 \u6240\u6709\u7684\u5916\u663E\u5B50\u4E00\u540C\u7EC4\u6210\u4E86\u9057\u4F20\u4FE1\u606F\uFF0C\u8BE5\u4FE1\u606F\u4F1A\u4F53\u73B0\u5728\u86CB\u767D\u8D28\u4E0A\u3002 \u526A\u63A5\u65B9\u5F0F\u5E76\u4E0D\u662F\u552F\u4E00\u7684\uFF08\u53C2\u770B\u66FF\u4EE3\u526A\u63A5\uFF09\uFF0C\u6240\u4EE5\u5916\u663E\u5B50\u53EA\u80FD\u5728\u6210\u4F53mRNA\u4E2D\u88AB\u770B\u51FA\u3002\u5373\u4F7F\u662F\u4F7F\u7528\u751F\u7269\u4FE1\u606F\u5B66\u65B9\u6CD5\uFF0C\u8981\u7CBE\u786E\u9884\u6D4B\u5916\u663E\u5B50\u7684\u4F4D\u7F6E\u4E5F\u662F\u975E\u5E38\u56F0\u96BE\u7684\u3002 \u771F\u6838\u751F\u7269\u7684\u57FA\u56E0\uFF0C\u5176\u7EBF\u6027\u8868\u8FBE\u88AB\u5185\u542B\u5B50\u963B\u65AD\uFF0C\u8FD9\u5C31\u662F\u6240\u8C13\u7684\uFF08split gene\uFF09\uFF0C\u8BE5\u73B0\u8C61\u7684\u53D1\u73B0\u8005\u7406\u5BDF\u00B7\u7F85\u4F2F\u8328(Richard J. Roberts)\u548C\u83F2\u5229\u666E\u00B7\u590F\u666E(Phillip A. Sharp)\u83B7\u5F97\u4E861993\u5E74\u8BFA\u8D1D\u5C14\u751F\u7406\u5B66\u6216\u533B\u5B66\u5956\u3002 \u5728\u53CD\u5F0F\u526A\u63A5\u4E2D\uFF0C\u4E0D\u540CmRNA\u7684\u5916\u663E\u5B50\u53EF\u4EE5\u88AB\u63A5\u5408\u5728\u4E00\u8D77\u3002 \u4E00\u4E2A\u5916\u663E\u5B50\u7ECF\u5E38\u7F16\u7801\u86CB\u767D\u7684\u4E00\u4E2A\u86CB\u767D\u8D28\u7ED3\u6784\u57DF\u3002"@zh ,
"\u0395\u03BE\u03CC\u03BD\u03B9\u03BF (\u03AE \u03B5\u03BE\u03CE\u03BD\u03B9\u03BF) \u03BF\u03BD\u03BF\u03BC\u03AC\u03B6\u03B5\u03C4\u03B1\u03B9 \u03BF\u03C0\u03BF\u03B9\u03BF\u03B4\u03AE\u03C0\u03BF\u03C4\u03B5 \u03BC\u03AD\u03C1\u03BF\u03C2 \u03B5\u03BD\u03CC\u03C2 \u03B3\u03BF\u03BD\u03B9\u03B4\u03AF\u03BF\u03C5 \u03C0\u03BF\u03C5 \u03BA\u03C9\u03B4\u03B9\u03BA\u03BF\u03C0\u03BF\u03B9\u03B5\u03AF \u03AD\u03BD\u03B1 \u03C4\u03BC\u03AE\u03BC\u03B1 \u03C4\u03BF\u03C5 \u03C4\u03B5\u03BB\u03B9\u03BA\u03BF\u03CD \u03CE\u03C1\u03B9\u03BC\u03BF\u03C5 RNA \u03C0\u03BF\u03C5 \u03C0\u03B1\u03C1\u03AC\u03B3\u03B5\u03C4\u03B1\u03B9 \u03B1\u03C0\u03CC \u03B1\u03C5\u03C4\u03CC \u03C4\u03BF \u03B3\u03BF\u03BD\u03AF\u03B4\u03B9\u03BF \u03BC\u03B5\u03C4\u03AC \u03C4\u03B7\u03BD \u03B1\u03C6\u03B1\u03AF\u03C1\u03B5\u03C3\u03B7 \u03C4\u03C9\u03BD \u03B9\u03BD\u03C4\u03C1\u03BF\u03BD\u03AF\u03C9\u03BD \u03BC\u03AD\u03C3\u03C9 \u03C4\u03BF\u03C5 \u03BC\u03B1\u03C4\u03AF\u03C3\u03BC\u03B1\u03C4\u03BF\u03C2 \u03C4\u03BF\u03C5 RNA. \u039F \u03CC\u03C1\u03BF\u03C2 \u03B5\u03BE\u03CC\u03BD\u03B9\u03BF \u03B1\u03BD\u03B1\u03C6\u03AD\u03C1\u03B5\u03C4\u03B1\u03B9 \u03C4\u03CC\u03C3\u03BF \u03C3\u03C4\u03B7\u03BD \u03B1\u03BB\u03BB\u03B7\u03BB\u03BF\u03C5\u03C7\u03AF\u03B1 DNA \u03B5\u03BD\u03C4\u03CC\u03C2 \u03B5\u03BD\u03CC\u03C2 \u03B3\u03BF\u03BD\u03B9\u03B4\u03AF\u03BF\u03C5 \u03CC\u03C3\u03BF \u03BA\u03B1\u03B9 \u03C3\u03C4\u03B7\u03BD \u03B1\u03BD\u03C4\u03AF\u03C3\u03C4\u03BF\u03B9\u03C7\u03B7 \u03B1\u03BB\u03BB\u03B7\u03BB\u03BF\u03C5\u03C7\u03AF\u03B1 \u03C3\u03C4\u03B1 RNA \u03BC\u03B5\u03C4\u03AC\u03B3\u03C1\u03B1\u03C6\u03B1 \u03C0\u03BF\u03C5 \u03C0\u03C1\u03BF\u03BA\u03CD\u03C0\u03C4\u03BF\u03C5\u03BD \u03B1\u03C0\u03CC \u03B1\u03C5\u03C4\u03CC. \u039A\u03B1\u03C4\u03AC \u03C4\u03BF \u03BC\u03AC\u03C4\u03B9\u03C3\u03BC\u03B1 \u03C4\u03BF\u03C5 RNA, \u03C4\u03B1 \u03B9\u03BD\u03C4\u03C1\u03CC\u03BD\u03B9\u03B1 \u03B1\u03C0\u03BF\u03BC\u03B1\u03BA\u03C1\u03CD\u03BD\u03BF\u03BD\u03C4\u03B1\u03B9 \u03BA\u03B1\u03B9 \u03C4\u03B1 \u03B5\u03BE\u03CC\u03BD\u03B9\u03B1 \u03C3\u03C5\u03BD\u03B4\u03AD\u03BF\u03BD\u03C4\u03B1\u03B9 \u03BF\u03BC\u03BF\u03B9\u03BF\u03C0\u03BF\u03BB\u03B9\u03BA\u03AC \u03BC\u03B5\u03C4\u03B1\u03BE\u03CD \u03C4\u03BF\u03C5\u03C2 \u03B3\u03B9\u03B1 \u03C4\u03B7 \u03B4\u03B7\u03BC\u03B9\u03BF\u03C5\u03C1\u03B3\u03AF\u03B1 \u03C4\u03BF\u03C5 \u03CE\u03C1\u03B9\u03BC\u03BF\u03C5 \u03B1\u03B3\u03B3\u03B5\u03BB\u03B9\u03B1\u03C6\u03CC\u03C1\u03BF\u03C5 RNA. \u0391\u03BA\u03C1\u03B9\u03B2\u03CE\u03C2 \u03CC\u03C0\u03C9\u03C2 \u03BF\u03BB\u03CC\u03BA\u03BB\u03B7\u03C1\u03BF \u03C4\u03BF \u03C3\u03CD\u03BD\u03BF\u03BB\u03BF \u03C4\u03C9\u03BD \u03B3\u03BF\u03BD\u03B9\u03B4\u03AF\u03C9\u03BD \u03B5\u03BD\u03CC\u03C2 \u03B5\u03AF\u03B4\u03BF\u03C5\u03C2 \u03B1\u03C0\u03BF\u03C4\u03B5\u03BB\u03B5\u03AF \u03C4\u03BF \u03B3\u03BF\u03BD\u03B9\u03B4\u03AF\u03C9\u03BC\u03B1, \u03BF\u03BB\u03CC\u03BA\u03BB\u03B7\u03C1\u03BF \u03C4\u03BF \u03C3\u03CD\u03BD\u03BF\u03BB\u03BF \u03C4\u03C9\u03BD \u03B5\u03BE\u03BF\u03BD\u03AF\u03C9\u03BD \u03B1\u03C0\u03BF\u03C4\u03B5\u03BB\u03B5\u03AF \u03C4\u03BF ."@el ,
"En genetiko, ekzono estas nukleotida sekvenco en geno, kiu enkodigas parton de la matura ribonuklea acido (RNA) farita de tiu geno, post splisado kaj forigo de la intronoj. Alivorte, la ekzono estas la mala koncepto de la introno."@eo ,
"\u0627\u0644\u0625\u0643\u0633\u0648\u0646 (\u0628\u0627\u0644\u0625\u0646\u062C\u0644\u064A\u0632\u064A\u0629: Exon)\u200F \u0647\u0648 \u0623\u064A \u0642\u0637\u0639\u0629 \u0645\u0646 \u0627\u0644\u062F\u064A \u0627\u0646 \u0627\u064A \u0627\u0644\u062A\u064A \u062A\u0645 \u0646\u0633\u062E\u0647\u0627 \u0644\u062A\u0635\u0628\u062D \u062C\u0632\u0621\u0627 \u0645\u0646 \u0627\u0644\u0631\u0646\u0627 \u0627\u0644\u0645\u0631\u0633\u0627\u0644 \u0627\u0644\u0628\u062F\u0627\u0626\u064A \u0648\u0644\u0627 \u064A\u062A\u0645 \u0627\u0644\u062A\u062E\u0644\u0635 \u0645\u0646\u0647\u0627 \u0639\u0646\u062F \u0645\u0639\u0627\u0644\u062C\u062A\u0647\u060C \u0639\u0644\u0649 \u0639\u0643\u0633 \u0627\u0644\u0625\u0646\u062A\u0631\u0648\u0646 \u0627\u0644\u0630\u064A \u064A\u062A\u0645 \u0627\u0642\u062A\u0637\u0627\u0639\u0647 \u0645\u0646 \u0627\u0644\u0631\u0646\u0627 \u0627\u0644\u0645\u0631\u0633\u0627\u0644 \u0627\u0644\u0628\u062F\u0627\u0626\u064A \u0644\u0644\u062D\u0635\u0648\u0644 \u0639\u0644\u0649 \u0631\u0646\u0627 \u0645\u0631\u0633\u0627\u0644 \u0646\u0627\u0636\u062C. \u0648\u0627\u0636\u0639 \u0627\u0644\u062A\u0633\u0645\u064A\u0629 \u0647\u0648 \u0627\u0644\u0639\u0627\u0644\u0645 \u0648\u0627\u0644\u062A\u0631 \u0643\u064A\u0644\u0628\u0631\u062A \u0641\u064A \u0639\u0627\u0645 1978. \u0645\u0646 \u0627\u0644\u0623\u062E\u0637\u0627\u0621 \u0627\u0644\u0634\u0627\u0626\u0639\u0629 \u0647\u0648 \u0648\u0635\u0641 \u0627\u0644\u0625\u0643\u0633\u0648\u0646\u0627\u062A \u0628\u0623\u0646\u0647\u0627 \u0627\u0644\u062C\u0632\u0621 \u0627\u0644\u0645\u0634\u0641\u0631 \u0644\u0644\u062D\u0645\u0648\u0636 \u0627\u0644\u0623\u0645\u064A\u0646\u064A\u0629 \u0648\u0647\u0630\u0627 \u063A\u064A\u0631 \u0635\u062D\u064A\u062D \u0644\u0623\u0646 \u0627\u0644\u0625\u0643\u0633\u0648\u0646\u0627\u062A \u0623\u064A\u0636\u0627 \u062A\u062D\u0648\u064A \u0639\u0644\u0649 \u0645\u0646\u0627\u0637\u0642 \u063A\u064A\u0631 \u0645\u0634\u0641\u0631\u0629 \u0623\u0645\u0627 \u0627\u0644\u0645\u0646\u0627\u0637\u0642 \u0627\u0644\u0645\u0634\u0641\u0631\u0629 \u0641\u064A \u0627\u0644\u0625\u0643\u0633\u0648\u0646 \u064A\u0633\u0645\u0649 \u0625\u0637\u0627\u0631 \u0627\u0644\u0642\u0631\u0627\u0621\u0629 \u0627\u0644\u0645\u0641\u062A\u0648\u062D."@ar ,
"Exon je jak\u00E1koli \u010D\u00E1st genu (\u010D\u00E1st sekvence nukleov\u00E9 kyseliny DNA nebo RNA), kter\u00E1 bude tvo\u0159it \u010D\u00E1st kone\u010Dn\u00E9 zral\u00E9 mRNA produkovan\u00E9 t\u00EDmto genem v procesu zvan\u00E9m transkripce. Podle t\u00E9to sekvence, kter\u00E1 se naz\u00FDv\u00E1 k\u00F3duj\u00EDc\u00ED sekvence, se obvykle tvo\u0159\u00ED b\u00EDlkovina v procesu zvan\u00E9m translace. Krom\u011B exonu obsahuje sekvence DNA introny, kter\u00E9 jsou tak\u00E9 sou\u010D\u00E1st\u00ED genu. V procesu splicingu se introny z pre-mRNA vyst\u0159\u00EDhaj\u00ED, \u010D\u00EDm\u017E vznik\u00E1 mRNA, podle n\u00ED\u017E je nakonec tvo\u0159ena b\u00EDlkovina. Typick\u00FD lidsk\u00FD gen obsahuje v pr\u016Fm\u011Bru osm exon\u016F s pr\u016Fm\u011Brnou d\u00E9lkou vnit\u0159n\u00EDch exon\u016F 145 nukleotid\u016F. Introny jsou v pr\u016Fm\u011Bru v\u00EDce ne\u017E 10kr\u00E1t del\u0161\u00ED, v n\u011Bkter\u00FDch p\u0159\u00EDpadech jsou dokonce mnohem del\u0161\u00ED. DNA eukaryot se skl\u00E1d\u00E1 z exon\u016F a intron\u016F, DNA prokaryot se skl\u00E1d\u00E1 v\u00FDhradn\u011B z exon\u016F. Soubor v\u0161ech gen\u016F tvo\u0159\u00ED genom dan\u00E9ho druhu, soubor v\u0161ech exon\u016F tvo\u0159\u00ED exom."@cs ,
"Ekson, egzon, sekwencja koduj\u0105ca \u2013 odcinek genu koduj\u0105cy sekwencj\u0119 aminokwas\u00F3w w cz\u0105steczce bia\u0142ka. Poszczeg\u00F3lne eksony oddzielone s\u0105 od siebie intronami (sekwencjami niekoduj\u0105cymi) i wyst\u0119puj\u0105 wy\u0142\u0105cznie w kom\u00F3rkach eukariotycznych. Pierwotny transkrypt zawiera w\u00F3wczas na przemian u\u0142o\u017Cone odcinki intronowe i eksonowe. Po zsyntetyzowaniu czapeczki i poliadenylacji cz\u0105steczki RNA, ale jeszcze przed jej eksportem z j\u0105dra do cytoplazmy nast\u0119puje wyci\u0119cie wszystkich intron\u00F3w oraz po\u0142\u0105czenie ekson\u00F3w w jedn\u0105 ca\u0142o\u015B\u0107 (splicing). Po zako\u0144czeniu tych proces\u00F3w transkrypt staje si\u0119 funkcjonaln\u0105 cz\u0105steczk\u0105 informacyjnego RNA (mRNA), kt\u00F3ry w tej postaci mo\u017Ce opu\u015Bci\u0107 j\u0105dro kom\u00F3rkowe i zosta\u0107 u\u017Cytym w procesie translacji."@pl ,
"El ex\u00F3n es la regi\u00F3n de un gen que no es separada durante el proceso de corte y empalme y, por tanto, se mantienen en el ARN mensajero maduro. En los genes que codifican una prote\u00EDna, son los exones los que contienen la informaci\u00F3n para producir la prote\u00EDna codificada en el gen. En estos casos, cada ex\u00F3n codifica una porci\u00F3n espec\u00EDfica de la prote\u00EDna completa, de manera que el conjunto de exones forma la regi\u00F3n codificante del gen. En eucariotas los exones de un gen est\u00E1n separados por regiones largas de ADN (llamadas intrones) que no codifican.\u200B \u200B"@es ,
"En exon \u00E4r en del av nukleotid-sekvensen i DNA-molekylen i en gen som utg\u00F6r kod f\u00F6r delar av det slutliga proteinet f\u00F6r genen. Hos eukaryoter f\u00F6rekommer dessutom ofta att delar i sekvensen, s.k. introner, redigeras bort genom splitsning innan proteinet tillverkas."@sv ,
"Een exon (van Engels: expressed region) is het coderend gedeelte van een gen. Het grootste deel van de exons zal uiteindelijk coderen voor het polypeptide dat door het betreffende gen bepaald wordt. De delen van het gen die niet in het uiteindelijke mRNA terechtkomen, worden introns genoemd. De situatie is enigszins te vergelijken met een boek waar tussen de leesbare tekst door opeens enkele regels staan die uit willekeurige letters bestaan. Deze willekeurige letters zullen in het uiteindelijke \"boek\" ertussenuit gehaald worden, waardoor een verhaal zal ontstaan dat volledig leesbaar is. De exons vormen de leesbare tekst."@nl ,
"Dans les g\u00E8nes des organismes eucaryotes, les exons sont les segments d\u2019un pr\u00E9curseur ARN qui sont conserv\u00E9s dans l\u2019ARN apr\u00E8s \u00E9pissage et que l'on retrouve dans l'ARN mature dans le cytoplasme. Les segments du pr\u00E9curseur ARN qui sont \u00E9limin\u00E9s lors de l'\u00E9pissage s'appellent par opposition des introns. On trouve principalement les exons dans les ARN messagers (ARNm) codant des prot\u00E9ines. Certains ARNm peuvent parfois subir un processus d'\u00E9pissage alternatif, dans lequel un ou plusieurs exons peuvent \u00EAtre excis\u00E9s ou certains introns conserv\u00E9s dans de rares cas. De mani\u00E8re g\u00E9n\u00E9rale, les g\u00E8nes sont constitu\u00E9s d'une suite d'exons et d'introns altern\u00E9s, d\u00E9butant et se finissant par un exon. Par exemple : Exon 1 - Intron 1 - Exon 2 - Intron 2 - Exon 3 - \u2026 - Intron n-1 - Exon n Apr\u00E8s la transcription dans le noyau (chez les eucaryotes), l'ARN synth\u00E9tis\u00E9 va subir un certain nombre de modifications, dont l'\u00E9pissage, au cours duquel les exons vont \u00EAtre sutur\u00E9s et les introns excis\u00E9s de l'ARN, afin de donner l'ARN mature fonctionnel, comme l'ARNm utilis\u00E9 pour la traduction en prot\u00E9ine apr\u00E8s export dans le cytoplasme. Dans leur grande majorit\u00E9, les g\u00E8nes des eucaryotes sup\u00E9rieurs contiennent des introns ; toutefois, certains ne sont compos\u00E9s que d'un seul exon, c'est par exemple de cas des g\u00E8nes des histones chez les chord\u00E9s. Environ 3 % seulement des g\u00E8nes humains ne contiennent qu'un seul exon et donc aucun intron. Il existe aussi de mani\u00E8re plus rare des introns dans certains g\u00E8nes bact\u00E9riens ou d'arch\u00E9es, ainsi que dans certains virus qui les infectent. Il s'agit souvent d'introns d'un type particulier appel\u00E9s introns auto\u00E9pissables."@fr ,
"Ein Exon (von engl. exon, gebildet von intron und der Vorsilbe ex des Ausdrucks expressed [region]) ist der Teil eines eukaryotischen Gens, der nach Splei\u00DFen (Splicing) erhalten bleibt. Demgegen\u00FCber stehen die Introns (englisch intragenic regions), die beim Splei\u00DFen herausgeschnitten und abgebaut werden. Das typische humane Gen enth\u00E4lt durchschnittlich acht Exons mit einer mittleren L\u00E4nge der internen Exons von 145 Nukleotiden. Introns sind im Durchschnitt mehr als 10-mal so lang, in einigen F\u00E4llen sind sie sogar noch wesentlich l\u00E4nger. Im Vergleich zu den Eukaryoten besteht die DNA von Prokaryoten ausschlie\u00DFlich aus Exons. Die Exons Protein-codierender Gene enthalten den offenen Leserahmen (englisch open reading frame, ORF) und zus\u00E4tzlich den 5' und 3' untranslatierten Bereich (englisch untranslated region, UTR) aus den terminalen Exons. Nur etwa 1,5 Prozent der gesamten genomischen Desoxyribonukleins\u00E4ure (DNA) codieren f\u00FCr Proteine (das haploide humane Genom bel\u00E4uft sich auf rund 23.000 Protein-codierende Gene), w\u00E4hrend der Rest aus Genen f\u00FCr nichtcodierenden Desoxyribonukleins\u00E4uren (englisch non-coding DNA), sowie Introns, regulatorischer DNA und nichtcodierenden Desoxyribonukleins\u00E4uren (sogenannte \u201Ejunk\u201C-DNA) besteht. Da viele der Protein-codierenden Gene u. a. durch alternatives Splicing des Prim\u00E4rtranskripts (Pr\u00E4kursor-mRNA, pr\u00E4-mRNA) eines Gens mehr als ein Protein produzieren, kommen im menschlichen K\u00F6rper aber weit mehr als nur 23.000 verschiedene Proteine vor. Hierbei entscheidet sich erst w\u00E4hrend des Splei\u00DFvorgangs, welche DNA-Sequenzen Introns und welche Exons sind. Mit anderen Worten: Da nicht immer nach dem gleichen festen Muster gesplei\u00DFt wird (vgl. Alternatives Splei\u00DFen), ist die genaue Angabe von Exons nur bedingt m\u00F6glich, da je nach fertiger mRNA unterschiedliche Teile eines Gens als Exons definiert werden k\u00F6nnen. Eine genaue Voraussage von Exons mittels der Bioinformatik ist daher \u00E4u\u00DFerst schwierig (vgl. Splei\u00DFstelle und Exon Trapping). Dar\u00FCber hinaus kennt man heute Proteine, die aus Exonen von Genen aus r\u00E4umlich weit entfernten Regionen, mitunter sogar unterschiedlichen Chromosomen, aufgebaut sind. Mithin ist die traditionelle Ein-Gen-ein-Enzym-Hypothese (auch: Ein-Gen-eine-mRNA-ein-Protein-Hypothese) f\u00FCr h\u00F6here Organismen heute nicht mehr haltbar. Polycistronische mRNA besteht aus multiplen ORFs in einem Transkript, mit kurzen Regionen von UTRs zwischen den ORFs. Die regelm\u00E4\u00DFige Abfolge von Exons und Introns macht die typische Struktur der eukaryotischen Gene aus \u2013 das sogenannte Mosaikgen (englisch split gene) \u2013 f\u00FCr dessen Entdeckung Richard John Roberts und Phillip Allen Sharp 1993 mit dem Nobelpreis f\u00FCr Physiologie oder Medizin ausgezeichnet wurden. Die Gesamtheit der Exone eines Organismus wird als Exom bezeichnet."@de ,
"Gli esoni costituiscono, insieme agli introni, la porzione di un gene (eucariotico o di archeobatteri) che viene trascritta dalle RNA polimerasi durante il processo di trascrizione.Gli esoni, in seguito al processo di splicing del trascritto primario, detto hnRNA, si ritrovano negli mRNA maturi; talvolta il trascritto primario pu\u00F2 subire un processo di splicing alternativo in seguito al quale, negli mRNA maturi, si possono ritrovare anche gli introni o parti di essi. Spesso, erroneamente, viene affermato che gli esoni costituiscono la parte codificante del genoma; questo \u00E8 vero solo in parte: se, infatti, \u00E8 vero che tutta la sequenza che codifica una proteina deve risiedere su uno o pi\u00F9 esoni, non \u00E8 invece sempre vero che un esone sia codificante: esoni non codificanti sono stati individuati in molti geni umani. Nel DNA degli Eucarioti un gene \u00E8 composto da un certo numero di esoni e di introni; questi ultimi possono essere di dimensioni molto varie anche dell'ordine di centinaia di migliaia di basi. Molte fasi dei meccanismi di rimozione degli esoni durante la maturazione dell'mRNA sono ancora sconosciute mentre alcuni passaggi cominciano ad essere noti: ad esempio generalmente gli esoni sono delimitati da due coppie di nucleotidi, un GT e un AG, ma questo da solo non \u00E8 sufficiente a definire l'esone. Si tratta comunque di un processo estremamente preciso, che deve identificare un piccolo esone di qualche decina o centinaia di basi in mezzo a una regione cromosomica che pu\u00F2 essere di centinaia di migliaia di basi e inoltre se questi meccanismi vengono meno, come succede ad esempio quando le sequenze GT e AG vanno incontro a mutazione, gli esoni non vengono riconosciuti in maniera appropriata e ne deriva la produzione di un RNA anomalo, che non \u00E8 in grado di produrre la proteina normale: \u00E8 quanto succede in numerosi pazienti affetti da malattie genetiche.L'mRNA maturo, negli Eucarioti, \u00E8 di solito costituito oltre che dalla parte codificante (Coding DNA sequence o CDS), anche da due regioni non tradotte (UTR) poste una al 5' e l'altra al 3' del trascritto. Questo comporta quindi l'esistenza di esoni completamente o parzialmente non codificanti, ossia quelli che andranno a costituire le UTR del trascritto maturo."@it ,
"\u042D\u043A\u0437\u043E\u043D\u044B (\u043E\u0442 \u0430\u043D\u0433\u043B. ex(pressi)on \u2014 \u0432\u044B\u0440\u0430\u0436\u0435\u043D\u0438\u0435) \u2014 \u0443\u0447\u0430\u0441\u0442\u043A\u0438 \u0414\u041D\u041A, \u043A\u043E\u043F\u0438\u0438 \u043A\u043E\u0442\u043E\u0440\u044B\u0445 \u0441\u043E\u0441\u0442\u0430\u0432\u043B\u044F\u044E\u0442 \u0437\u0440\u0435\u043B\u0443\u044E \u0420\u041D\u041A. \u041F\u043E \u043C\u043D\u0435\u043D\u0438\u044E \u043D\u0435\u043A\u043E\u0442\u043E\u0440\u044B\u0445 \u0438\u0441\u0441\u043B\u0435\u0434\u043E\u0432\u0430\u0442\u0435\u043B\u0435\u0439 \u044D\u043A\u0437\u043E\u043D\u044B \u0441\u043E\u043E\u0442\u0432\u0435\u0442\u0441\u0442\u0432\u0443\u044E\u0442 \u0434\u043E\u043C\u0435\u043D\u0430\u043C (\u0441\u0442\u0440\u0443\u043A\u0442\u0443\u0440\u043D\u043E \u0430\u0432\u0442\u043E\u043D\u043E\u043C\u043D\u044B\u043C \u043E\u0431\u043B\u0430\u0441\u0442\u044F\u043C) \u0432 \u0431\u0435\u043B\u043A\u0435 \u0438 \u044F\u0432\u043B\u044F\u044E\u0442\u0441\u044F \u043F\u0435\u0440\u0432\u0438\u0447\u043D\u044B\u043C\u0438 \u0433\u0435\u043D\u0435\u0442\u0438\u0447\u0435\u0441\u043A\u0438\u043C\u0438 \u0435\u0434\u0438\u043D\u0438\u0446\u0430\u043C\u0438, \u043F\u0435\u0440\u0435\u043A\u043E\u043C\u0431\u0438\u043D\u0430\u0446\u0438\u044F \u043A\u043E\u0442\u043E\u0440\u044B\u0445 \u043F\u0440\u0438\u0432\u043E\u0434\u0438\u0442 \u043A \u0432\u043E\u0437\u043D\u0438\u043A\u043D\u043E\u0432\u0435\u043D\u0438\u044E \u0432 \u0445\u043E\u0434\u0435 \u044D\u0432\u043E\u043B\u044E\u0446\u0438\u0438 \u043D\u043E\u0432\u044B\u0445 \u0433\u0435\u043D\u043E\u0432 \u0438 \u0441\u043E\u043E\u0442\u0432\u0435\u0442\u0441\u0442\u0432\u0435\u043D\u043D\u043E \u043D\u043E\u0432\u044B\u0445 \u0431\u0435\u043B\u043A\u043E\u0432. \u042D\u043A\u0437\u043E\u043D\u044B \u0447\u0435\u0440\u0435\u0434\u0443\u044E\u0442\u0441\u044F \u0432 \u0441\u0442\u0440\u0443\u043A\u0442\u0443\u0440\u0435 \u0433\u0435\u043D\u0430 \u0441 \u0434\u0440\u0443\u0433\u0438\u043C\u0438 \u0444\u0440\u0430\u0433\u043C\u0435\u043D\u0442\u0430\u043C\u0438 \u2014 \u0438\u043D\u0442\u0440\u043E\u043D\u0430\u043C\u0438. \u041F\u0440\u0438 \u0430\u043B\u044C\u0442\u0435\u0440\u043D\u0430\u0442\u0438\u0432\u043D\u043E\u043C \u0441\u043F\u043B\u0430\u0439\u0441\u0438\u043D\u0433\u0435 \u043D\u0435\u043A\u043E\u0442\u043E\u0440\u044B\u0435 \u044D\u043A\u0437\u043E\u043D\u044B \u0443\u0434\u0430\u043B\u044F\u044E\u0442\u0441\u044F \u0438\u0437 \u0437\u0440\u0435\u043B\u043E\u0439 \u0420\u041D\u041A. \u0417\u0440\u0435\u043B\u0430\u044F \u0420\u041D\u041A \u043C\u043E\u0436\u0435\u0442 \u043E\u0431\u0440\u0430\u0437\u043E\u0432\u0430\u0442\u044C\u0441\u044F \u0432 \u0440\u0435\u0437\u0443\u043B\u044C\u0442\u0430\u0442\u0435: \n* \u0443\u0434\u0430\u043B\u0435\u043D\u0438\u044F \u0438\u043D\u0442\u0440\u043E\u043D\u043E\u0432 \u0438\u0437 \u043D\u0435\u0437\u0440\u0435\u043B\u043E\u0439 \u043C\u0420\u041D\u041A \u0432 \u043F\u0440\u043E\u0446\u0435\u0441\u0441\u0435 \u0446\u0438\u0441-\u0441\u043F\u043B\u0430\u0439\u0441\u0438\u043D\u0433\u0430 \n* \u043E\u0431\u044A\u0435\u0434\u0438\u043D\u0435\u043D\u0438\u044F \u0438 \u043B\u0438\u0433\u0438\u0440\u043E\u0432\u0430\u043D\u0438\u044F \u0434\u0432\u0443\u0445 \u0438\u043B\u0438 \u0431\u043E\u043B\u0435\u0435 \u043D\u0435\u0437\u0440\u0435\u043B\u044B\u0445 \u043C\u0420\u041D\u041A \u0432 \u043F\u0440\u043E\u0446\u0435\u0441\u0441\u0435 \u0442\u0440\u0430\u043D\u0441-\u0441\u043F\u043B\u0430\u0439\u0441\u0438\u043D\u0433\u0430. \u0417\u0440\u0435\u043B\u0430\u044F \u0420\u041D\u041A \u043C\u043E\u0436\u0435\u0442 \u043A\u043E\u0434\u0438\u0440\u043E\u0432\u0430\u0442\u044C \u043F\u043E\u043B\u0438\u043F\u0435\u043F\u0442\u0438\u0434 (\u043C\u0420\u041D\u041A) \u0438\u043B\u0438 \u0432\u044B\u043F\u043E\u043B\u043D\u044F\u0442\u044C \u043D\u0435\u043A\u043E\u0434\u0438\u0440\u0443\u044E\u0449\u0438\u0435 \u0444\u0443\u043D\u043A\u0446\u0438\u0438 (\u0432\u0445\u043E\u0434\u0438\u0442\u044C \u0432 \u0441\u043E\u0441\u0442\u0430\u0432 \u0440\u0438\u0431\u043E\u0441\u043E\u043C\u044B, \u0440\u0420\u041D\u041A \u0438\u043B\u0438 \u0443\u0447\u0430\u0441\u0442\u0432\u043E\u0432\u0430\u0442\u044C \u0432 \u0442\u0440\u0430\u043D\u0441\u043B\u044F\u0446\u0438\u0438 \u0432 \u0441\u043B\u0443\u0447\u0430\u0435 \u0442\u0420\u041D\u041A). \u0412 \u0437\u0430\u0432\u0438\u0441\u0438\u043C\u043E\u0441\u0442\u0438 \u043E\u0442 \u043A\u043E\u043D\u0442\u0435\u043A\u0441\u0442\u0430, \u044D\u043A\u0437\u043E\u043D \u043C\u043E\u0436\u0435\u0442 \u0441\u043E\u043E\u0442\u0432\u0435\u0442\u0441\u0442\u0432\u043E\u0432\u0430\u0442\u044C \u043F\u043E\u0441\u043B\u0435\u0434\u043E\u0432\u0430\u0442\u0435\u043B\u044C\u043D\u043E\u0441\u0442\u0438 \u043D\u0443\u043A\u043B\u0435\u043E\u0442\u0438\u0434\u043E\u0432 \u0438 \u0414\u041D\u041A, \u0438 \u0442\u0440\u0430\u043D\u0441\u043A\u0440\u0438\u043F\u0442\u0430 \u0420\u041D\u041A."@ru ,
"Ex\u00E3o (portugu\u00EAs europeu) ou \u00C9xon (portugu\u00EAs brasileiro) (derivado do ingl\u00EAs \"expressed regions\") (plural \"ex\u00F5es\") \u00E9 um segmento de DNA de um gene eucari\u00F3tico cujo transcrito sobrevive ao processo de excis\u00E3o (ou splicing ou processamento). Numa mol\u00E9cula de mRNA, um ex\u00E3o pode codificar amino\u00E1cidos de uma prote\u00EDna, noutras mol\u00E9culas de RNA maduro como tRNAs e rRNAs, o ex\u00E3o constitui parte estrutural. Um segmento do gene que tem o respectivo transcrito (RNA) eliminado na excis\u00E3o \u00E9 chamado de \u00EDntron ou intr\u00E3o. O processo de reconhecimento de intr\u00F5es e ex\u00F5es em genes para definir quais trechos ser\u00E3o transcritos numa cadeia de RNA guarda uma admir\u00E1vel complexidade e, em grande parte, \u00E9 ainda um mist\u00E9rio. Desde os anos 80 j\u00E1 se sabe que \u00E9 poss\u00EDvel a partir de um s\u00F3 gene serem selecionados distintos grupos de ex\u00F5es, cada grupo de ex\u00F5es produzindo uma prote\u00EDna diferente. Pesquisas recentes t\u00EAm revelado que esse tipo de ocorr\u00EAncia, longe de ser uma exce\u00E7\u00E3o, \u00E9 a regra no funcionamento dos genes, chegando a um n\u00FAmero estimado m\u00E9dio de 5,7 varia\u00E7\u00F5es poss\u00EDveis na express\u00E3o do gene. Essa variabilidade permite que um mesmo gene exer\u00E7a fun\u00E7\u00F5es diferentes dependendo do tipo de c\u00E9lula em que esteja inserido. Tamb\u00E9m \u00E9 poss\u00EDvel que uma mol\u00E9cula de RNA maduro seja obtida pela composi\u00E7\u00E3o de ex\u00F5es de genes diferentes, ou mesmo de cromossomos distintos, atrav\u00E9s de um tipo especial de excis\u00E3o chamada trans-splicing. Essas observa\u00E7\u00F5es t\u00EAm levado a novas considera\u00E7\u00F5es sobre a defini\u00E7\u00E3o de gene e tamb\u00E9m a novos paradigmas quanto \u00E0 forma de organiza\u00E7\u00E3o do genoma e da transmiss\u00E3o da heran\u00E7a gen\u00E9tica."@pt ,
"En un gen, un ex\u00F3 \u00E9s cada un dels segments d'ADN que es transcriuen i no s\u00F3n eliminats en la maduraci\u00F3 de l'ARN missatger ARNm. No tots els exons contenen informaci\u00F3 codificadora per prote\u00EFnes, perqu\u00E8 les UTRs 5' i 3' hi estan incloses. Es contraposen als introns, que no contenen informaci\u00F3 codificadora i s\u00ED que s\u00F3n eliminats durant la maduraci\u00F3. El conjunt d'exons en un genoma s'anomena exoma. Cada gen d'un organisme eucariota sol tenir 5 o 6 exons, flanquejats per introns. Com a exemple, s'acostuma a dir que un gen \u00E9s com una p\u00E0gina de text d'un llibre en la qual nom\u00E9s uns par\u00E0grafs (els exons) tenen informaci\u00F3, mentre els altres par\u00E0grafs (els introns) \u00E9s una seq\u00FC\u00E8ncia no codificant, ADN escombraries. Per poder recuperar la informaci\u00F3 cal (mitjan\u00E7ant el proc\u00E9s de maduraci\u00F3 de l'ARN) eliminar els par\u00E0grafs que no s'expressaran (introns). Els exons estan envoltats d'una seq\u00FC\u00E8ncia espec\u00EDfica que delimita els introns dels exons i que \u00E9s reconeguda per un complex proteic que s'encarrega de separar-los durant la maduraci\u00F3 de l'ARN missatger (splicing). Un cop s'han eliminat els introns, els exons es tornen a unir entre si, aconseguint-se el tr\u00E0nscrit primari, a partir del qual es far\u00E0 en \u00FAltim terme la traducci\u00F3, o s\u00EDntesi proteica. Es considera que l'exist\u00E8ncia d'introns pot haver estat un motor evolutiu, ja que permetria que hi hagu\u00E9s zones a l'interior dels gens susceptibles de recombinar f\u00E0cilment. A m\u00E9s, mitjan\u00E7ant l'splicing alternatiu (un mecanisme de recombinaci\u00F3 durant la maduraci\u00F3 de l'ARN que permet que en tornar-se a unir els exons, es puguin unir en diferent ordre i nombre dels que hi havia a la seq\u00FC\u00E8ncia original d'ADN) s'aconsegueix crear moltes prote\u00EFnes diferents a partir d'un sol gen. La prote\u00F2mica s'encarrega d'estudiar aquest complex fenomen."@ca ,
"Ekson adalah bagian dari gen yang akan menyandi bagian dari RNA matang akhir yang dihasilkan oleh gen tersebut setelah intron telah dihilangkan oleh penjalinan RNA (RNA splicing). Istilah ekson mengacu pada urutan DNA dalam gen dan urutan yang sesuai dalam transkrip RNA. Dalam penjalinan RNA, intron dihapus dan ekson secara kovalen bergabung satu sama lain, menghasilkan RNA duta matang. Sama seperti seluruh rangkaian gen yang dimiliki suatu spesies membentuk genom, seluruh rangkaian ekson membentuk ."@in ,
"An exon is any part of a gene that will form a part of the final mature RNA produced by that gene after introns have been removed by RNA splicing. The term exon refers to both the DNA sequence within a gene and to the corresponding sequence in RNA transcripts. In RNA splicing, introns are removed and exons are covalently joined to one another as part of generating the mature RNA. Just as the entire set of genes for a species constitutes the genome, the entire set of exons constitutes the exome."@en ,
"Exoia itzulpen prozesuan aminoazidoak kodetzen dituen DNA-ren zatiari deritzo. Introien aldean, exoiak ez dira desagertzen RNA-m-aren heltze prozesuan, eta duten informazio genetikoa adierazten da itzulpenean. Eukariotoen DNA-k proteinak kodetzen dituzten zatiak ditu (exoiak), proteinak kodetzen ez dituzten zatiekin (introiekin) tartekatuak. Prokariotoen genomak, aldiz, ez du introirik. Exoiak \"splicing\" edo RNA-m-aren birdoitze prozesuan kanporatuak ez diren gene baten zatiak dira, RNA-m helduan agertzen direnak. Proteinak sortzeko informazioa dute."@eu ;
dbo:wikiPageWikiLink dbr:Molecular_biology ,
dbr:Intron ,
dbr:Outron ,
dbr:Cistron ,
dbr:Noncoding_DNA ,
dbr:Hexon_protein ,
dbr:Interrupted_gene ,
dbr:Exome_sequencing ,
dbr:Untranslated_region ,
dbr:Base_pair ,
dbr:Genome ,
dbr:Gene_trapping ,
dbr:Twintron ,
dbr:Exome ,
dbr:Morpholino ,
dbr:Eukaryote ,
,
dbr:Exxon ,
dbr:Organism ,
dbr:Animal ,
dbr:NcRNA ,
dbr:Alternative_splicing ,
dbr:Exon_trapping ,
dbr:Whole_genome_sequencing ,
dbr:Intergenic_region ,
dbr:Species ,
dbr:Biochemist ,
dbr:Exon_shuffling ,
dbr:Reporter_gene ,
,
,
dbr:Insertional_DNA ,
dbr:Arabidopsis_thaliana ,
,
dbr:Precision_medicine ,
dbr:Walter_Gilbert ,
dbr:Health_care ,
dbr:Introns ,
dbc:RNA_splicing ,
dbr:Omics ,
dbr:Exon-intron_database ,
dbr:RNA_splicing ,
dbr:Neuron ,
dbc:DNA ,
dbr:Axon ,
dbr:Amino_acid ,
dbr:Genome_size ,
dbr:Vertebrate ,
dbr:Non-coding_RNA ,
dbr:Exitron ,
dbr:C-value ,
dbr:Developmental_biology ,
,
dbr:Human_genome ,
dbc:Spliceosome ,
dbr:Gene ,
dbr:MRNA ,
dbr:RNA ,
dbr:RRNA ,
dbr:TRNA .
@prefix dbp: .
@prefix dbt: .
dbr:Exon dbp:wikiPageUsesTemplate dbt:Other_uses ,
dbt:Post_transcriptional_modification ,
dbt:Spaced_ndash ,
dbt:Wiktionary ,
dbt:Authority_control ,
dbt:Reflist ,
dbt:Short_description ,
dbt:Distinguish ,
dbt:Cite_journal ;
dbo:thumbnail ;
dbo:wikiPageRevisionID 1112935056 ;
dbo:wikiPageExternalLink .
@prefix ns12: .
dbr:Exon dbo:wikiPageExternalLink ns12:exonintron .
@prefix ns13: .
dbr:Exon dbo:wikiPageExternalLink ns13:Exon .
@prefix xsd: .
dbr:Exon dbo:wikiPageLength "12900"^^xsd:nonNegativeInteger ;
dbo:wikiPageID 10238 ;
owl:sameAs .
@prefix dbpedia-sv: .
dbr:Exon owl:sameAs dbpedia-sv:Exon .
@prefix dbpedia-pl: .
dbr:Exon owl:sameAs dbpedia-pl:Ekson .
@prefix dbpedia-sh: .
dbr:Exon owl:sameAs dbpedia-sh:Ekson ,
.
@prefix dbpedia-hr: .
dbr:Exon owl:sameAs dbpedia-hr:Egzon .
@prefix wikidata: .
dbr:Exon owl:sameAs wikidata:Q373027 .
@prefix dbpedia-it: .
dbr:Exon owl:sameAs dbpedia-it:Esone .
@prefix dbpedia-de: .
dbr:Exon owl:sameAs dbpedia-de:Exon .
@prefix dbpedia-oc: .
dbr:Exon owl:sameAs dbpedia-oc:Exon ,
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@prefix dbpedia-et: .
dbr:Exon owl:sameAs dbpedia-et:Ekson ,
,
,
,
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@prefix dbpedia-cs: .
dbr:Exon owl:sameAs dbpedia-cs:Exon .
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,
,
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@prefix ns26: .
dbr:Exon owl:sameAs ns26:Egzon ,
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dbr:Exon owl:sameAs dbpedia-eo:Ekzono ,
,
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dbr:Exon owl:sameAs dbpedia-fr:Exon ,
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dbr:Exon owl:sameAs dbpedia-ro:Exon ,
,
,
,
,
,
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dbo:wikiPageWikiLink dbr:Exon .
dbr:Adenine_phosphoribosyltransferase dbo:wikiPageWikiLink dbr:Exon .
dbr:Histidinemia dbo:wikiPageWikiLink dbr:Exon .
dbr:Medium-chain_acyl-coenzyme_A_dehydrogenase_deficiency dbo:wikiPageWikiLink dbr:Exon .
dbr:Phylomedicine dbo:wikiPageWikiLink dbr:Exon .
dbr:Chimeric_gene dbo:wikiPageWikiLink dbr:Exon .
dbr:ELF3 dbo:wikiPageWikiLink dbr:Exon .
dbr:SbtB_protein dbo:wikiPageWikiLink dbr:Exon .
dbr:FARS2 dbo:wikiPageWikiLink dbr:Exon .
dbr:FOXRED1 dbo:wikiPageWikiLink dbr:Exon .
dbr:MIQE dbo:wikiPageWikiLink dbr:Exon .
dbr:Proline-rich_protein_21 dbo:wikiPageWikiLink dbr:Exon .
dbr:Osteonectin dbo:wikiPageWikiLink dbr:Exon .
dbr:ATPAF2 dbo:wikiPageWikiLink dbr:Exon .
dbr:SEC16B dbo:wikiPageWikiLink dbr:Exon .
dbr:MYO10 dbo:wikiPageWikiLink dbr:Exon .
dbr:Transcriptomics_technologies dbo:wikiPageWikiLink dbr:Exon .
dbr:Tepotinib dbo:wikiPageWikiLink dbr:Exon .
dbr:GALNT11 dbo:wikiPageWikiLink dbr:Exon .
dbr:USP4 dbo:wikiPageWikiLink dbr:Exon .
dbr:Juvenile_hormone_diol_kinase dbo:wikiPageWikiLink dbr:Exon .
dbr:SULT2B1 dbo:wikiPageWikiLink dbr:Exon .
dbr:Dipeptidase_1 dbo:wikiPageWikiLink dbr:Exon .
dbr:UBE2Z dbo:wikiPageWikiLink dbr:Exon .
dbr:HtrA_serine_peptidase_2 dbo:wikiPageWikiLink dbr:Exon .
dbr:Neuroblastoma_RAS_viral_oncogene_homolog dbo:wikiPageWikiLink dbr:Exon .
dbr:SULT1C4 dbo:wikiPageWikiLink dbr:Exon .
dbr:UGT1A5 dbo:wikiPageWikiLink dbr:Exon .
dbr:UGT1A9 dbo:wikiPageWikiLink dbr:Exon .
dbr:XYLT1 dbo:wikiPageWikiLink dbr:Exon .
dbr:N-alpha-acetyltransferase_10 dbo:wikiPageWikiLink dbr:Exon .
dbr:NDUFV1 dbo:wikiPageWikiLink dbr:Exon .
dbr:SULT1A2 dbo:wikiPageWikiLink dbr:Exon .
dbo:wikiPageWikiLink dbr:Exon .
dbr:UGT1A4 dbo:wikiPageWikiLink dbr:Exon .
dbr:UGT1A3 dbo:wikiPageWikiLink dbr:Exon .
dbr:TRNA-intron_endonuclease dbo:wikiPageWikiLink dbr:Exon .
dbr:CLPB dbo:wikiPageWikiLink dbr:Exon .
dbr:Short-stature_homeobox_gene dbo:wikiPageWikiLink dbr:Exon .