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在纯化系统中重建5' 定向的人类错配修复。

Reconstitution of 5'-directed human mismatch repair in a purified system.

作者信息

Zhang Yanbin, Yuan Fenghua, Presnell Steven R, Tian Keli, Gao Yin, Tomkinson Alan E, Gu Liya, Li Guo-Min

机构信息

Graduate Center for Toxicology and Markey Cancer Center, University of Kentucky Medical Center, Lexington, Kentucky 40536, USA.

出版信息

Cell. 2005 Sep 9;122(5):693-705. doi: 10.1016/j.cell.2005.06.027.

Abstract

This paper reports reconstitution of 5'-nick-directed mismatch repair using purified human proteins. The reconstituted system includes MutSalpha or MutSbeta, MutLalpha, RPA, EXO1, HMGB1, PCNA, RFC, polymerase delta, and ligase I. In this system, MutSbeta plays a limited role in repair of base-base mismatches, but it processes insertion/deletion mispairs much more efficiently than MutSalpha, which efficiently corrects both types of heteroduplexes. MutLalpha reduces the processivity of EXO1 and terminates EXO1-catalyzed excision upon mismatch removal. In the absence of MutLalpha, mismatch-provoked excision by EXO1 occurs extensively. RPA and HMGB1 play similar but complementary roles in stimulating MutSalpha-activated, EXO1-catalyzed excision in the presence of a mismatch, but RPA has a distinct role in facilitating MutLalpha-mediated excision termination past mismatch. Evidence is provided that efficient repair of a single mismatch requires multiple molecules of MutSalpha-MutLalpha complex. These data suggest a model for human mismatch repair involving coordinated initiation and termination of mismatch-provoked excision.

摘要

本文报道了利用纯化的人类蛋白质重建5'-切口导向的错配修复。重建的系统包括MutSα或MutSβ、MutLα、RPA、EXO1、HMGB1、PCNA、RFC、聚合酶δ和连接酶I。在该系统中,MutSβ在碱基错配修复中作用有限,但它处理插入/缺失错配的效率比MutSα高得多,而MutSα能有效校正两种类型的异源双链体。MutLα降低EXO1的持续合成能力,并在错配去除后终止EXO1催化的切除。在没有MutLα的情况下,EXO1会广泛引发错配诱导的切除。RPA和HMGB1在存在错配时刺激MutSα激活的、EXO1催化的切除过程中发挥相似但互补的作用,但RPA在促进MutLα介导的错配后切除终止方面具有独特作用。有证据表明,单个错配的有效修复需要多个MutSα-MutLα复合物分子。这些数据提出了一个涉及错配诱导切除的协调起始和终止的人类错配修复模型。

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