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单链DNA结合改变人类复制蛋白A的结构并促进其与DNA依赖性蛋白激酶的相互作用。

Single-stranded-DNA binding alters human replication protein A structure and facilitates interaction with DNA-dependent protein kinase.

作者信息

Blackwell L J, Borowiec J A, Mastrangelo I A

机构信息

Department of Biochemistry, New York University Medical Center, New York 10016, USA.

出版信息

Mol Cell Biol. 1996 Sep;16(9):4798-807. doi: 10.1128/MCB.16.9.4798.

Abstract

Human replication protein A (hRPA) is an essential single-stranded-DNA-binding protein that stimulates the activities of multiple DNA replication and repair proteins through physical interaction. To understand DNA binding and its role in hRPA heterologous interaction, we examined the physical structure of hRPA complexes with single-stranded DNA (ssDNA) by scanning transmission electron microscopy. Recent biochemical studies have shown that hRPA combines with ssDNA in at least two binding modes: by interacting with 8 to 10 nucleotides (hRPA8nt) and with 30 nucleotides (hRPA30nt). We find the relatively unstable hRPA8nt complex to be notably compact with many contacts between hRPA molecules. In contrast, on similar lengths of ssDNA, hRPA30nt complexes align along the DNA and make few intermolecular contacts. Surprisingly, the elongated hRPA30nt complex exists in either a contracted or an extended form that depends on ssDNA length. Therefore, homologous-protein interaction and available ssDNA length both contribute to the physical changes that occur in hRPA when it binds ssDNA. We used activated DNA-dependent protein kinase as a biochemical probe to detect alterations in conformation and demonstrated that formation of the extended hRPA30nt complex correlates with increased phosphorylation of the hRPA 29-kDa subunit. Our results indicate that hRPA binds ssDNA in a multistep pathway, inducing new hRPA alignments and conformations that can modulate the functional interaction of other factors with hRPA.

摘要

人类复制蛋白A(hRPA)是一种必需的单链DNA结合蛋白,它通过物理相互作用刺激多种DNA复制和修复蛋白的活性。为了了解DNA结合及其在hRPA异源相互作用中的作用,我们通过扫描透射电子显微镜检查了hRPA与单链DNA(ssDNA)复合物的物理结构。最近的生化研究表明,hRPA与ssDNA至少以两种结合模式结合:通过与8至10个核苷酸相互作用(hRPA8nt)和与30个核苷酸相互作用(hRPA30nt)。我们发现相对不稳定的hRPA8nt复合物明显紧凑,hRPA分子之间有许多接触。相比之下,在相似长度的ssDNA上,hRPA30nt复合物沿DNA排列,分子间接触很少。令人惊讶的是,细长的hRPA30nt复合物以收缩或伸展形式存在,这取决于ssDNA的长度。因此,同源蛋白相互作用和可用的ssDNA长度都有助于hRPA结合ssDNA时发生的物理变化。我们使用活化的DNA依赖性蛋白激酶作为生化探针来检测构象变化,并证明伸展的hRPA30nt复合物的形成与hRPA 29-kDa亚基磷酸化增加相关。我们的结果表明,hRPA以多步骤途径结合ssDNA,诱导新的hRPA排列和构象,从而可以调节其他因子与hRPA的功能相互作用。

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本文引用的文献

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