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转录和核苷酸切除修复中的TFIIH酶活性。

TFIIH enzymatic activities in transcription and nucleotide excision repair.

作者信息

Lainé Jean-Philippe, Mocquet Vincent, Egly Jean-Marc

机构信息

Institut de Génétique et de Biologie, Moléculaire et Cellulaire, Illkirch, France.

出版信息

Methods Enzymol. 2006;408:246-63. doi: 10.1016/S0076-6879(06)08015-3.

DOI:10.1016/S0076-6879(06)08015-3
PMID:16793373
Abstract

Transcription and nucleotide excision repair (NER) are two major mechanisms in which the transcription factor TFIIH plays a crucial role. In order to investigate its function, we first described a fast and efficient purification protocol of TFIIH from either HeLa cells or patient cell lines, as well as various in vitro enzymatic assays set up in our laboratory. All these enzymatic assays have been adapted to work on immobilized DNA, a powerful tool allowing for sequential protein incubations in various buffer conditions, without destabilizing protein complexes bound to the DNA. Runoff transcription assays performed with either whole cell extract or highly purified factors underline the role of TFIIH helicases (XPB and XPD) in the RNA synthesis. Moreover, the requirement of XPB and XPD in NER can also be investigated with various assays corresponding to the different steps of this process. The DNA opening assay (permanganate footprint) highlights DNA unwinding of the double-stranded DNA fragment within the repair complex, whereas the dual incision assay allows for detection of the double cut on both sides of the lesion. The gap-filling reaction following the cuts can be monitored as well with a DNA resynthesis assay. Futhermore, the use of immobilized DNA is of great interest to study the detailed mechanism in which TFIIH plays a central role. This chapter describes the ATP-independent recruitment of TFIIH on the damaged DNA previously recognized by XPC-hHR23B and the sequential arrival and departure of the repair proteins within the NER complex.

摘要

转录和核苷酸切除修复(NER)是转录因子TFIIH发挥关键作用的两种主要机制。为了研究其功能,我们首先描述了一种从HeLa细胞或患者细胞系中快速高效纯化TFIIH的方法,以及我们实验室建立的各种体外酶促测定法。所有这些酶促测定法都已适用于固定化DNA,这是一种强大的工具,可在各种缓冲条件下进行连续的蛋白质孵育,而不会破坏与DNA结合的蛋白质复合物的稳定性。用全细胞提取物或高度纯化的因子进行的径流转录测定强调了TFIIH解旋酶(XPB和XPD)在RNA合成中的作用。此外,也可以通过与该过程不同步骤相对应的各种测定法来研究XPB和XPD在NER中的需求。DNA开放测定法(高锰酸盐足迹法)突出了修复复合物中双链DNA片段的DNA解旋,而双切口测定法可检测损伤两侧的双切口。切割后的缺口填充反应也可以通过DNA重新合成测定法进行监测。此外,固定化DNA的使用对于研究TFIIH发挥核心作用的详细机制非常有意义。本章描述了TFIIH在先前由XPC-hHR23B识别的受损DNA上的非ATP依赖性募集,以及NER复合物中修复蛋白的顺序到达和离开。

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