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大肠杆菌DNA切除修复蛋白UvrB和UvrC的同源区域在稳定UvrBC-DNA复合物及3'-切口形成中的作用

Function of the homologous regions of the Escherichia coli DNA excision repair proteins UvrB and UvrC in stabilization of the UvrBC-DNA complex and in 3'-incision.

作者信息

Moolenaar G F, Franken K L, van de Putte P, Goosen N

机构信息

Leiden Institute of Chemistry, Gorlaeus Laboratories, Leiden University, The Netherlands.

出版信息

Mutat Res. 1997 Dec;385(3):195-203. doi: 10.1016/s0921-8777(97)00042-6.

Abstract

The nicking of damaged DNA during the nucleotide excision repair reaction in E. coli, is the result of a multi-step process involving three enzymes, UvrA, UvrB and UvrC. The UvrB protein is loaded on the site of the damage by UvrA, forming a stable UvrB-DNA complex. This complex is recognized by UvrC and in the resulting UvrBC-DNA complex dual incision takes place, first on the 3'-side and next on the 5'-side of the damaged nucleotide. A domain in the C-terminal part of UvrB has been identified to be essential for formation of the specific UvrBC-DNA complex that induces the 3'-incision [1]. The N-terminal half of UvrC contains a region that is homologous to this C-terminal domain of UvrB. Using site-directed mutagenesis of a conserved phenylalanine in the homologous regions of UvrB and UvrC two mutants were constructed, UvrB(F652L) and UvrC(F223L). Both proteins were tested in vitro using a DNA substrate with a defined cisplatin lesion. The protein-DNA and protein-protein interactions were studied using bandshift assays and DNAse I footprinting. We show that both domains are important for the binding of UvrC to the UvrB-DNA complex.

摘要

在大肠杆菌的核苷酸切除修复反应中,受损DNA的切口是一个涉及三种酶(UvrA、UvrB和UvrC)的多步骤过程的结果。UvrB蛋白由UvrA加载到损伤位点,形成稳定的UvrB-DNA复合物。该复合物被UvrC识别,在形成的UvrBC-DNA复合物中会进行双重切口,首先在受损核苷酸的3'侧,然后在5'侧。已确定UvrB C末端部分的一个结构域对于诱导3'切口的特定UvrBC-DNA复合物的形成至关重要[1]。UvrC的N末端一半包含一个与UvrB的该C末端结构域同源的区域。利用UvrB和UvrC同源区域中一个保守苯丙氨酸的定点诱变构建了两个突变体,UvrB(F652L)和UvrC(F223L)。使用具有确定顺铂损伤的DNA底物在体外对这两种蛋白进行了测试。利用带移分析和DNA酶I足迹法研究了蛋白质-DNA和蛋白质-蛋白质相互作用。我们表明这两个结构域对于UvrC与UvrB-DNA复合物的结合都很重要。

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