Unexpected moves: a conformational change in MutSα enables high-affinity DNA mismatch binding

Author:

Bruekner Susanne R1,Pieters Wietske2,Fish Alexander1,Liaci A Manuel3,Scheffers Serge1,Rayner Emily4,Kaldenbach Daphne2,Drost Lisa2,Dekker Marleen2,van Hees-Stuivenberg Sandrine4,Delzenne-Goette Elly2,de Konink Charlotte2,Houlleberghs Hellen2,Dubbink Hendrikus Jan5,AlSaegh Abeer6,de Wind Niels4ORCID,Förster Friedrich3,te Riele Hein2ORCID,Sixma Titia K1ORCID

Affiliation:

1. Division of Biochemistry, Netherlands Cancer Institute and Oncode Institute , 1066 CX Amsterdam, The Netherlands

2. Division of Tumor Biology and Immunology, Netherlands Cancer Institute , 1066CX Amsterdam, The Netherlands

3. Structural Biochemistry, Bijvoet Centre for Biomolecular Research, Utrecht University , 3584CH Utrecht, The Netherlands

4. Department of Human Genetics, Leiden University Medical Center , PO Box 9600 2300RC Leiden, The Netherlands

5. Department of Pathology, Erasmus Medical Center , PO Box 2040 3000CA Rotterdam, The Netherlands

6. Sultan Qaboos Comprehensive Cancer Care and Research Center , PO Box 787, 117  Muscat , Oman

Abstract

AbstractThe DNA mismatch repair protein MutSα recognizes wrongly incorporated DNA bases and initiates their correction during DNA replication. Dysfunctions in mismatch repair lead to a predisposition to cancer. Here, we study the homozygous mutation V63E in MSH2 that was found in the germline of a patient with suspected constitutional mismatch repair deficiency syndrome who developed colorectal cancer before the age of 30. Characterization of the mutant in mouse models, as well as slippage and repair assays, shows a mildly pathogenic phenotype. Using cryogenic electron microscopy and surface plasmon resonance, we explored the mechanistic effect of this mutation on MutSα function. We discovered that V63E disrupts a previously unappreciated interface between the mismatch binding domains (MBDs) of MSH2 and MSH6 and leads to reduced DNA binding. Our research identifies this interface as a ‘safety lock’ that ensures high-affinity DNA binding to increase replication fidelity. Our mechanistic model explains the hypomorphic phenotype of the V63E patient mutation and other variants in the MBD interface.

Funder

Dutch Research Council

European Commission

Dutch Cancer Society

European Commision

Netherlands Cancer Institute

Publisher

Oxford University Press (OUP)

Subject

Genetics

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