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Analysis of Drosophila p8 and p52 mutants reveals distinct roles for the maintenance of TFIIH stability and male germ cell differentiation

机译:果蝇p8和p52突变体的分析揭示了维持TFIIH稳定性和雄性生殖细胞分化的独特作用

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摘要

Eukaryotic gene expression is activated by factors that interact within complex machinery to initiate transcription. An important component of this machinery is the DNA repair/transcription factor TFIIH. Mutations in TFIIH result in three human syndromes: xeroderma pigmentosum, Cockayne syndrome and trichothiodystrophy. Transcription and DNA repair defects have been linked to some clinical features of these syndromes. However, how mutations in TFIIH affect specific developmental programmes, allowing organisms to develop with particular phenotypes, is not well understood. Here, we show that mutations in the p52 and p8 subunits of TFIIH have a moderate effect on the gene expression programme in the Drosophila testis, causing germ cell differentiation arrest in meiosis, but no Polycomb enrichment at the promoter of the affected differentiation genes, supporting recent data that disagree with the current Polycomb-mediated repression model for regulating gene expression in the testis. Moreover, we found that TFIIH stability is not compromised in p8 subunit-depleted testes that show transcriptional defects, highlighting the role of p8 in transcription. Therefore, this study reveals how defects in TFIIH affect a specific cell differentiation programme and contributes to understanding the specific syndrome manifestations in TFIIH-afflicted patients.
机译:真核基因表达被在复杂机制内相互作用以启动转录的因子激活。该机制的重要组成部分是DNA修复/转录因子TFIIH。 TFIIH的突变会导致三种人类综合症:色素干皮症,Cockayne综合症和硫代营养不良。转录和DNA修复缺陷与这些综合征的某些临床特征有关。但是,TFIIH中的突变如何影响特定的发育程序,从而使生物体发育成特定的表型,目前尚不清楚。在这里,我们显示TFIIH的p52和p8亚基中的突变对果蝇睾丸中的基因表达程序有中等影响,导致减数分裂中的生殖细胞分化停滞,但受影响的分化基因的启动子上没有聚梳富集,支持最近的数据与当前的Polycomb介导的抑制睾丸中基因表达的调节模型不一致。此外,我们发现TFIIH稳定性在显示转录缺陷的p8缺失亚基的睾丸中没有受到损害,突出了p8在转录中的作用。因此,这项研究揭示了TFIIH中的缺陷如何影响特定的细胞分化程序,并有助于理解TFIIH患病患者的特定综合征表现。

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