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具有无活性XPD解旋酶的TFIIH在转录起始中发挥作用,但在DNA修复方面存在缺陷。

TFIIH with inactive XPD helicase functions in transcription initiation but is defective in DNA repair.

作者信息

Winkler G S, Araújo S J, Fiedler U, Vermeulen W, Coin F, Egly J M, Hoeijmakers J H, Wood R D, Timmers H T, Weeda G

机构信息

Department of Cell Biology and Genetics, Medical Genetics Center, Erasmus University Rotterdam, P. O. Box 1738, 3000 DR Rotterdam, The Netherlands.

出版信息

J Biol Chem. 2000 Feb 11;275(6):4258-66. doi: 10.1074/jbc.275.6.4258.

Abstract

TFIIH is a multisubunit protein complex involved in RNA polymerase II transcription and nucleotide excision repair, which removes a wide variety of DNA lesions including UV-induced photoproducts. Mutations in the DNA-dependent ATPase/helicase subunits of TFIIH, XPB and XPD, are associated with three inherited syndromes as follows: xeroderma pigmentosum with or without Cockayne syndrome and trichothiodystrophy. By using epitope-tagged XPD we purified mammalian TFIIH carrying a wild type or an active-site mutant XPD subunit. Contrary to XPB, XPD helicase activity was dispensable for in vitro transcription, catalytic formation of trinucleotide transcripts, and promoter opening. Moreover, in contrast to XPB, microinjection of mutant XPD cDNA did not interfere with in vivo transcription. These data show directly that XPD activity is not required for transcription. However, during DNA repair, neither 5' nor 3' incisions in defined positions around a DNA adduct were detected in the presence of TFIIH containing inactive XPD, although substantial damage-dependent DNA synthesis was induced by the presence of mutant XPD both in cells and cell extracts. The aberrant damage-dependent DNA synthesis caused by the mutant XPD does not lead to effective repair, consistent with the discrepancy between repair synthesis and survival in cells from a number of XP-D patients.

摘要

TFIIH是一种多亚基蛋白复合物,参与RNA聚合酶II转录和核苷酸切除修复,后者可去除多种DNA损伤,包括紫外线诱导的光产物。TFIIH的DNA依赖性ATP酶/解旋酶亚基XPB和XPD发生突变,与以下三种遗传性综合征相关:伴有或不伴有科凯恩综合征的着色性干皮病以及毛发硫营养不良。通过使用表位标记的XPD,我们纯化了携带野生型或活性位点突变XPD亚基的哺乳动物TFIIH。与XPB相反,XPD解旋酶活性对于体外转录、三核苷酸转录物的催化形成和启动子开放并非必需。此外,与XPB不同,显微注射突变型XPD cDNA并不干扰体内转录。这些数据直接表明转录不需要XPD活性。然而,在DNA修复过程中,在含有无活性XPD的TFIIH存在的情况下,未检测到围绕DNA加合物特定位置的5'或3'切口,尽管突变型XPD在细胞和细胞提取物中均诱导了大量的损伤依赖性DNA合成。由突变型XPD引起的异常损伤依赖性DNA合成不会导致有效的修复,这与许多着色性干皮病D型患者细胞中修复合成与存活之间的差异一致。

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