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Detection of high-affinity and sliding clamp modes for MSH2-MSH6 by single-molecule unzipping force analysis

Cornell Affiliated Author(s)

Author

J. Jiang
L. Bai
J.A. Surtees
Z. Gemici
M.D. Wang
E. Alani

Abstract

Mismatch repair (MMR) is initiated by MutS family proteins (MSH) that recognize DNA mismatches and recruit downstream repair factors. We used a single-molecule DNA-unzipping assay to probe interactions between S. cerevisiae MSH2-MSH6 and a variety of DNA mismatch substrates. This work revealed a high-specificity binding state of MSH proteins for mismatch DNA that was not observed in bulk assays and allowed us to measure the affinity of MSH2-MSH6 for mismatch DNA as well as its footprint on DNA surrounding the mismatch site. Unzipping analysis with mismatch substrates containing an end blocked by lac repressor allowed us to identify MSH proteins present on DNA between the mismatch and the block, presumably in an ATP-dependent sliding clamp mode. These studies provide a high-resolution approach to study MSH interactions with DNA mismatches and supply evidence to support and refute different models proposed for initiation steps in MMR. Copyright © 2005 by Elsevier Inc.

Date Published

Journal

Molecular Cell

Volume

20

Issue

5

Number of Pages

771-781,

URL

https://www.scopus.com/inward/record.uri?eid=2-s2.0-28444499354&doi=10.1016%2fj.molcel.2005.10.014&partnerID=40&md5=452fb195399d45ea93466898ca436226

DOI

10.1016/j.molcel.2005.10.014

Research Area

Group (Lab)

Michelle Wang Group

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