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多功能蛋白 RPA、YB-1 和 XPC 修复因子对 DNA 糖苷酶 NEIL1 切割 AP 位点的影响。

Effect of the multifunctional proteins RPA, YB-1, and XPC repair factor on AP site cleavage by DNA glycosylase NEIL1.

机构信息

Institute of Chemical Biology and Fundamental Medicine, Siberian Division of Russian Academy of Sciences, Prospect Lavrentieva 8, Novosibirsk, 630090, Russia.

出版信息

J Mol Recognit. 2012 Apr;25(4):224-33. doi: 10.1002/jmr.2182.

Abstract

DNA glycosylases are key enzymes in the first step of base excision DNA repair, recognizing DNA damage and catalyzing the release of damaged nucleobases. Bifunctional DNA glycosylases also possess associated apurinic/apyrimidinic (AP) lyase activity that nick the damaged DNA strand at an abasic (or AP) site, formed either spontaneously or at the first step of repair. NEIL1 is a bifunctional DNA glycosylase capable of processing lesions, including AP sites, not only in double-stranded but also in single-stranded DNA. Here, we show that proteins participating in DNA damage response, YB-1 and RPA, affect AP site cleavage by NEIL1. Stimulation of the AP lyase activity of NEIL1 was observed when an AP site was located in a 60 nt-long double-stranded DNA. Both RPA and YB-1 inhibited AP site cleavage by NEIL1 when the AP site was located in single-stranded DNA. Taking into account a direct interaction of YB-1 with the AP site, located in single-stranded DNA, and the high affinity of both YB-1 and RPA for single-stranded DNA, this behavior is presumably a consequence of a competition with NEIL1 for the DNA substrate. Xeroderma pigmentosum complementation group C protein (XPC), a key protein of another DNA repair pathway, was shown to interact directly with AP sites but had no effect on AP site cleavage by NEIL1.

摘要

DNA 糖苷酶是碱基切除修复第一步中的关键酶,可识别 DNA 损伤并催化损伤核碱基的释放。双功能 DNA 糖苷酶还具有相关的无嘌呤/无嘧啶(AP)核酸内切酶活性,可在无碱基(或 AP)位点处切开受损的 DNA 链,该位点是在自发形成或修复的第一步中形成的。NEIL1 是一种具有双功能的 DNA 糖苷酶,能够处理包括 AP 位点在内的损伤,不仅在双链 DNA 中,而且在单链 DNA 中也能处理。在这里,我们表明参与 DNA 损伤反应的蛋白质 YB-1 和 RPA 影响 NEIL1 对 AP 位点的切割。当 AP 位点位于 60nt 长的双链 DNA 中时,观察到 NEIL1 的 AP 核酸内切酶活性得到刺激。当 AP 位点位于单链 DNA 中时,RPA 和 YB-1 均抑制 NEIL1 对 AP 位点的切割。考虑到 YB-1 与位于单链 DNA 中的 AP 位点的直接相互作用,以及 YB-1 和 RPA 对单链 DNA 的高亲和力,这种行为可能是与 NEIL1 竞争 DNA 底物的结果。着色性干皮病互补组 C 蛋白(XPC)是另一种 DNA 修复途径的关键蛋白,它被证明可直接与 AP 位点相互作用,但对 NEIL1 切割 AP 位点没有影响。

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