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β滑动夹钳与MutL和MutS内的多个位点结合。

The beta sliding clamp binds to multiple sites within MutL and MutS.

作者信息

López de Saro Francisco J, Marinus Martin G, Modrich Paul, O'Donnell Mike

机构信息

The Rockefeller University, New York, New York 10021, USA.

出版信息

J Biol Chem. 2006 May 19;281(20):14340-9. doi: 10.1074/jbc.M601264200. Epub 2006 Mar 16.

Abstract

The MutL and MutS proteins are the central components of the DNA repair machinery that corrects mismatches generated by DNA polymerases during synthesis. We find that MutL interacts directly with the beta sliding clamp, a ring-shaped dimeric protein that confers processivity to DNA polymerases by tethering them to their substrates. Interestingly, the interaction of MutL with beta only occurs in the presence of single-stranded DNA. We find that the interaction occurs via a loop in MutL near the ATP-binding site. The binding site of MutL on beta locates to the hydrophobic pocket between domains two and three of the clamp. Site-specific replacement of two residues in MutL diminished interaction with beta without disrupting MutL function with helicase II. In vivo studies reveal that this mutant MutL is no longer functional in mismatch repair. In addition, the human MLH1 has a close match to the proliferating cell nuclear antigen clamp binding motif in the region that corresponds to the beta interaction site in Escherichia coli MutL, and a peptide corresponding to this site binds proliferating cell nuclear antigen. The current report also examines in detail the interaction of beta with MutS. We find that two distinct regions of MutS interact with beta. One is located near the C terminus and the other is close to the N terminus, within the mismatch binding domain. Complementation studies using genes encoding different MutS mutants reveal that the N-terminal beta interaction motif on MutS is essential for activity in vivo, but the C-terminal interaction site for beta is not. In light of these results, we propose roles for the beta clamp in orchestrating the sequence of events that lead to mismatch repair in the cell.

摘要

MutL和MutS蛋白是DNA修复机制的核心组成部分,可校正DNA聚合酶在合成过程中产生的错配。我们发现MutL直接与β滑动夹相互作用,β滑动夹是一种环状二聚体蛋白,通过将DNA聚合酶 tether 到其底物上赋予其持续性。有趣的是,MutL与β的相互作用仅在单链DNA存在时发生。我们发现这种相互作用通过MutL中靠近ATP结合位点的一个环发生。MutL在β上的结合位点位于夹的结构域二和三之间的疏水口袋中。MutL中两个残基的位点特异性替换减少了与β的相互作用,而不破坏MutL与解旋酶II的功能。体内研究表明,这种突变的MutL在错配修复中不再起作用。此外,人MLH1在对应于大肠杆菌MutL中β相互作用位点的区域与增殖细胞核抗原夹结合基序有密切匹配,并且对应于该位点的肽结合增殖细胞核抗原。本报告还详细研究了β与MutS的相互作用。我们发现MutS的两个不同区域与β相互作用。一个位于C末端附近,另一个靠近N末端,在错配结合域内。使用编码不同MutS突变体的基因进行的互补研究表明,MutS上的N末端β相互作用基序对于体内活性至关重要,但C末端与β的相互作用位点并非如此。根据这些结果,我们提出了β夹在协调导致细胞错配修复的事件序列中的作用。

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