Centre national de la recherche scientifique CNRS, Institute of Pharmacology and Structural Biology IPBS, 205 route de Narbonne, Toulouse F-31077, France.
Hum Mol Genet. 2013 Jul 15;22(14):2881-93. doi: 10.1093/hmg/ddt143. Epub 2013 Apr 4.
The basal transcription/repair factor II H (TFIIH), found mutated in cancer-prone or premature aging diseases, plays a still unclear role in RNA polymerase I transcription. Furthermore, the impact of this function on TFIIH-related diseases, such as trichothiodystrophy (TTD), remains to be explored. Here, we studied the involvement of TFIIH during the whole process of ribosome biogenesis, from RNAP1 transcription to maturation steps of the ribosomal RNAs. Our results show that TFIIH is recruited to the ribosomal DNA in an active transcription-dependent manner and functions in RNAP1 transcription elongation through ATP hydrolysis of the XPB subunit. Remarkably, we found a TFIIH allele-specific effect, affecting RNAP1 transcription and/or the pre-rRNA maturation process. Interestingly, this effect was observed in mutant TFIIH-TTD cells and also in the brains of TFIIH-TTD mice. Our findings provide evidence that defective ribosome synthesis represents a new faulty mechanism involved in the pathophysiology of TFIIH-related diseases.
基础转录/修复因子 II H(TFIIH)在易患癌症或早衰疾病中发现存在突变,其在 RNA 聚合酶 I 转录中发挥着仍不明确的作用。此外,该功能对 TFIIH 相关疾病(如毛发硫营养不良症(TTD))的影响仍有待探索。在这里,我们研究了 TFIIH 在核糖体生物发生的整个过程中的参与情况,从 RNAP1 转录到核糖体 RNA 的成熟步骤。我们的结果表明,TFIIH 以依赖于活跃转录的方式被募集到核糖体 DNA 上,并通过 XPB 亚基的 ATP 水解在 RNAP1 转录延伸中发挥作用。值得注意的是,我们发现了 TFIIH 等位基因特异性效应,影响 RNAP1 转录和/或前 rRNA 成熟过程。有趣的是,这种效应在突变 TFIIH-TTD 细胞以及 TFIIH-TTD 小鼠的大脑中均观察到。我们的研究结果提供了证据,表明核糖体合成缺陷代表了涉及 TFIIH 相关疾病病理生理学的新的错误机制。