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DNA修复需要复制蛋白a的动态结合。

Dynamic binding of replication protein a is required for DNA repair.

作者信息

Chen Ran, Subramanyam Shyamal, Elcock Adrian H, Spies Maria, Wold Marc S

机构信息

Department of Biochemistry, Carver College of Medicine, University of Iowa, Iowa City, IA 52242, USA.

Department of Biochemistry, Carver College of Medicine, University of Iowa, Iowa City, IA 52242, USA Department of Biochemistry, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

Nucleic Acids Res. 2016 Jul 8;44(12):5758-72. doi: 10.1093/nar/gkw339. Epub 2016 Apr 29.

Abstract

Replication protein A (RPA), the major eukaryotic single-stranded DNA (ssDNA) binding protein, is essential for replication, repair and recombination. High-affinity ssDNA-binding by RPA depends on two DNA binding domains in the large subunit of RPA. Mutation of the evolutionarily conserved aromatic residues in these two domains results in a separation-of-function phenotype: aromatic residue mutants support DNA replication but are defective in DNA repair. We used biochemical and single-molecule analyses, and Brownian Dynamics simulations to determine the molecular basis of this phenotype. Our studies demonstrated that RPA binds to ssDNA in at least two modes characterized by different dissociation kinetics. We also showed that the aromatic residues contribute to the formation of the longer-lived state, are required for stable binding to short ssDNA regions and are needed for RPA melting of partially duplex DNA structures. We conclude that stable binding and/or the melting of secondary DNA structures by RPA is required for DNA repair, including RAD51 mediated DNA strand exchange, but is dispensable for DNA replication. It is likely that the binding modes are in equilibrium and reflect dynamics in the RPA-DNA complex. This suggests that dynamic binding of RPA to DNA is necessary for different cellular functions.

摘要

复制蛋白A(RPA)是主要的真核生物单链DNA(ssDNA)结合蛋白,对复制、修复和重组至关重要。RPA与ssDNA的高亲和力结合取决于RPA大亚基中的两个DNA结合结构域。这两个结构域中进化保守的芳香族残基发生突变会导致功能分离表型:芳香族残基突变体支持DNA复制,但在DNA修复方面存在缺陷。我们使用生化和单分子分析以及布朗动力学模拟来确定这种表型的分子基础。我们的研究表明,RPA至少以两种具有不同解离动力学特征的模式与ssDNA结合。我们还表明,芳香族残基有助于形成寿命更长的状态,是稳定结合短ssDNA区域所必需的,也是RPA解开部分双链DNA结构所必需的。我们得出结论,DNA修复(包括RAD51介导的DNA链交换)需要RPA对DNA二级结构的稳定结合和/或解开,但DNA复制不需要。这些结合模式可能处于平衡状态,并反映了RPA-DNA复合物中的动力学。这表明RPA与DNA的动态结合对不同的细胞功能是必要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc7d/4937323/b3e87ad99834/gkw339fig1.jpg

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