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锌指基序在人类复制蛋白A氧化还原调节中的作用。

Role of zinc-finger motif in redox regulation of human replication protein A.

作者信息

Wang M, You J S, Lee S H

机构信息

Department of Biochemistry and Molecular Biology, Indiana University Cancer Center, Indiana University School of Medicine, Indianapolis 46202, USA.

出版信息

Antioxid Redox Signal. 2001 Aug;3(4):657-69. doi: 10.1089/15230860152543005.

Abstract

Replication protein A (RPA) is a heterotrimeric zinc-finger protein complex involved in DNA replication, repair, and genetic recombination. Unlike other zinc-finger proteins, RPA's zinc-finger motif is not essential for its single-stranded DNA (ssDNA) binding activity, but is involved in redox regulation of its single-stranded DNA (ssDNA) binding activity. To get an insight into the regulation of RPA-ssDNA interaction, wild-type RPA (wt-RPA) and zinc-finger mutant were examined for ssDNA binding activity using surface plasmon resonance technique. Interaction of wt-RPA with ssDNA under nonreducing conditions was very weak (KD x 2.33 x 10(-8) M) compared with that under reducing conditions (KD = 7.35 x 10(-11) M), whereas ssDNA binding affinity of the zinc-finger mutant was not affected by redox. The divalent ion chelator, o-phenanthroline, significantly reduced wt-RPA-ssDNA interaction, but had no effect on the zinc-finger mutant. The inhibitory effect of o-phenanthroline on RPA-ssDNA interaction was reversed by Zn(II), but not by other divalent cations, suggesting that Zn(II) is the unique metal coordinating the zinc-finger cysteines in redox regulation of RPA-ssDNA interaction. In DNA repair, redox affected RPA's interaction with damaged DNA, but not its role in stabilizing the xeroderma pigmentosum group A (XPA)-damaged DNA complex, suggesting that the zinc-finger motif may mediate the transition of RPA-XPA interaction to a stable RPA-XPA-damaged DNA complex in a redox-dependent manner.

摘要

复制蛋白A(RPA)是一种异源三聚体锌指蛋白复合物,参与DNA复制、修复和基因重组。与其他锌指蛋白不同,RPA的锌指基序对其单链DNA(ssDNA)结合活性并非必不可少,但参与其单链DNA(ssDNA)结合活性的氧化还原调节。为深入了解RPA与ssDNA相互作用的调节机制,利用表面等离子体共振技术检测了野生型RPA(wt-RPA)和锌指突变体的ssDNA结合活性。与还原条件下(KD = 7.35 x 10(-11) M)相比,非还原条件下wt-RPA与ssDNA的相互作用非常弱(KD x 2.33 x 10(-8) M),而锌指突变体的ssDNA结合亲和力不受氧化还原的影响。二价离子螯合剂邻菲罗啉显著降低了wt-RPA与ssDNA的相互作用,但对锌指突变体没有影响。邻菲罗啉对RPA与ssDNA相互作用的抑制作用可被Zn(II)逆转,但不能被其他二价阳离子逆转,这表明在RPA与ssDNA相互作用的氧化还原调节中,Zn(II)是协调锌指半胱氨酸的唯一金属。在DNA修复中,氧化还原影响RPA与受损DNA的相互作用,但不影响其在稳定A型着色性干皮病(XPA)-受损DNA复合物中的作用,这表明锌指基序可能以氧化还原依赖的方式介导RPA-XPA相互作用向稳定的RPA-XPA-受损DNA复合物的转变。

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