Centre National de la Recherche Scientifique/Institut National de la Santé et de la Recherche Médicale/Université de Strasbourg, Illkirch Cedex 67404, France.
Proc Natl Acad Sci U S A. 2013 Feb 19;110(8):E633-42. doi: 10.1073/pnas.1213981110. Epub 2013 Feb 4.
The xeroderma pigmentosum group D (XPD) helicase is a subunit of transcription/DNA repair factor, transcription factor II H (TFIIH) that catalyzes the unwinding of a damaged DNA duplex during nucleotide excision repair. Apart from two canonical helicase domains, XPD is composed of a 4Fe-S cluster domain involved in DNA damage recognition and a module of uncharacterized function termed the "ARCH domain." By investigating the consequences of a mutation found in a patient with trichothiodystrophy, we show that the ARCH domain is critical for the recruitment of the cyclin-dependent kinase (CDK)-activating kinase (CAK) complex. Indeed, this mutation not only affects the interaction with the MAT1 CAK subunit, thereby decreasing the in vitro basal transcription activity of TFIIH itself and impeding the efficient recruitment of the transcription machinery on the promoter of an activated gene, but also impairs the DNA unwinding activity of XPD and the nucleotide excision repair activity of TFIIH. We further demonstrate the role of CAK in downregulating the XPD helicase activity within TFIIH. Taken together, our results identify the ARCH domain of XPD as a platform for the recruitment of CAK and as a potential molecular switch that might control TFIIH composition and play a key role in the conversion of TFIIH from a factor active in transcription to a factor involved in DNA repair.
着色性干皮病组 D (XPD) 解旋酶是转录/DNA 修复因子转录因子 II H (TFIIH) 的一个亚基,它在核苷酸切除修复过程中催化受损 DNA 双链的解旋。除了两个典型的解旋酶结构域外,XPD 还包含一个涉及 DNA 损伤识别的 4Fe-S 簇结构域和一个未被表征的功能模块,称为“ARCH 结构域”。通过研究在患有毛发硫营养不良症的患者中发现的突变的后果,我们表明 ARCH 结构域对于细胞周期蛋白依赖性激酶 (CDK) 激活激酶 (CAK) 复合物的招募至关重要。事实上,这种突变不仅影响与 MAT1 CAK 亚基的相互作用,从而降低 TFIIH 自身的体外基础转录活性并阻碍转录机制在激活基因启动子上的有效募集,而且还会损害 XPD 的 DNA 解旋活性和 TFIIH 的核苷酸切除修复活性。我们进一步证明了 CAK 在下调 TFIIH 内 XPD 解旋酶活性方面的作用。总之,我们的结果确定了 XPD 的 ARCH 结构域作为 CAK 募集的平台,并作为潜在的分子开关,可能控制 TFIIH 的组成并在 TFIIH 从参与转录的因子向参与 DNA 修复的因子的转化中发挥关键作用。