首页> 美国卫生研究院文献>American Journal of Human Genetics >TFIIH Subunit Alterations Causing Xeroderma Pigmentosum and Trichothiodystrophy Specifically Disturb Several Steps during Transcription
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TFIIH Subunit Alterations Causing Xeroderma Pigmentosum and Trichothiodystrophy Specifically Disturb Several Steps during Transcription

机译:TFIIH亚基的改变导致干皮色素沉着和毛滴虫营养不良特别干扰转录过程中的几个步骤。

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摘要

Mutations in genes encoding the ERCC3 (XPB), ERCC2 (XPD), and GTF2H5 (p8 or TTD-A) subunits of the transcription and DNA-repair factor TFIIH lead to three autosomal-recessive disorders: xeroderma pigmentosum (XP), XP associated with Cockayne syndrome (XP/CS), and trichothiodystrophy (TTD). Although these diseases were originally associated with defects in DNA repair, transcription deficiencies might be also implicated. By using retinoic acid receptor beta isoform 2 (RARB2) as a model in several cells bearing mutations in genes encoding TFIIH subunits, we observed that (1) the recruitment of the TFIIH complex was altered at the activated RARB2 promoter, (2) TFIIH participated in the recruitment of nucleotide excision repair (NER) factors during transcription in a manner different from that observed during NER, and (3) the different TFIIH variants disturbed transcription by having distinct consequences on post-translational modifications of histones, DNA-break induction, DNA demethylation, and gene-loop formation. The transition from heterochromatin to euchromatin was disrupted depending on the variant, illustrating the fact that TFIIH, by contributing to NER factor recruitment, orchestrates chromatin remodeling. The subtle transcriptional differences found between various TFIIH variants thus participate in the phenotypic variability observed among XP, XP/CS, and TTD individuals.
机译:转录和DNA修复因子TFIIH的ERCC3(XPB),ERCC2(XPD)和GTF2H5(p8或TTD-A)亚基的编码基因突变会导致三种常染色体隐性遗传疾病:色素干皮病(XP),与XP相关的疾病患有Cockayne综合征(XP / CS)和毛发硫代营养不良(TTD)。尽管这些疾病最初与DNA修复缺陷有关,但也可能涉及转录缺陷。通过使用视黄酸受体β同工型2(RARB2)作为模型,在编码TFIIH亚基的基因的几个细胞中发生突变,我们观察到(1)TFIIH复合物的募集在激活的RARB2启动子上发生了改变,(2)TFIIH参与了(3)不同的TFIIH变体通过对组蛋白的翻译后修饰,DNA断裂诱导产生不同的影响,从而干扰了转录,从而在转录过程中募集了核苷酸切除修复(NER)因子。 DNA脱甲基化和基因环形成。从异染色质到常染色质的转变取决于变体,这说明了TFIIH通过促进NER因子募集来协调染色质重塑的事实。因此,在各种TFIIH变体之间发现的微妙转录差异参与了XP,XP / CS和TTD个体之间观察到的表型变异。

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