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MSH2/MSH6 Complex Promotes Error-Free Repair of AID-Induced dU:G Mispairs as well as Error-Prone Hypermutation of A:T Sites

Mismatch repair of AID-generated dU:G mispairs is critical for class switch recombination (CSR) and somatic hypermutation (SHM) in B cells. The generation of a previously unavailable Msh2(−/−)Msh6(−/−) mouse has for the first time allowed us to examine the impact of the complete loss of MutSα on lym...

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Autores principales: Roa, Sergio, Li, Ziqiang, Peled, Jonathan U., Zhao, Chunfang, Edelmann, Winfried, Scharff, Matthew D.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2887398/
https://www.ncbi.nlm.nih.gov/pubmed/20567595
http://dx.doi.org/10.1371/journal.pone.0011182
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author Roa, Sergio
Li, Ziqiang
Peled, Jonathan U.
Zhao, Chunfang
Edelmann, Winfried
Scharff, Matthew D.
author_facet Roa, Sergio
Li, Ziqiang
Peled, Jonathan U.
Zhao, Chunfang
Edelmann, Winfried
Scharff, Matthew D.
author_sort Roa, Sergio
collection PubMed
description Mismatch repair of AID-generated dU:G mispairs is critical for class switch recombination (CSR) and somatic hypermutation (SHM) in B cells. The generation of a previously unavailable Msh2(−/−)Msh6(−/−) mouse has for the first time allowed us to examine the impact of the complete loss of MutSα on lymphomagenesis, CSR and SHM. The onset of T cell lymphomas and the survival of Msh2(−/−)Msh6(−/−) and Msh2(−/−)Msh6(−/−)Msh3(−/−) mice are indistinguishable from Msh2(−/−) mice, suggesting that MSH2 plays the critical role in protecting T cells from malignant transformation, presumably because it is essential for the formation of stable MutSα heterodimers that maintain genomic stability. The similar defects on switching in Msh2(−/−), Msh2(−/−)Msh6(−/−) and Msh2(−/−)Msh6(−/−)Msh3(−/−) mice confirm that MutSα but not MutSβ plays an important role in CSR. Analysis of SHM in Msh2(−/−)Msh6(−/−) mice not only confirmed the error-prone role of MutSα in the generation of strand biased mutations at A:T bases, but also revealed an error-free role of MutSα when repairing some of the dU:G mispairs generated by AID on both DNA strands. We propose a model for the role of MutSα at the immunoglobulin locus where the local balance of error-free and error-prone repair has an impact in the spectrum of mutations introduced during Phase 2 of SHM.
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spelling pubmed-28873982010-06-21 MSH2/MSH6 Complex Promotes Error-Free Repair of AID-Induced dU:G Mispairs as well as Error-Prone Hypermutation of A:T Sites Roa, Sergio Li, Ziqiang Peled, Jonathan U. Zhao, Chunfang Edelmann, Winfried Scharff, Matthew D. PLoS One Research Article Mismatch repair of AID-generated dU:G mispairs is critical for class switch recombination (CSR) and somatic hypermutation (SHM) in B cells. The generation of a previously unavailable Msh2(−/−)Msh6(−/−) mouse has for the first time allowed us to examine the impact of the complete loss of MutSα on lymphomagenesis, CSR and SHM. The onset of T cell lymphomas and the survival of Msh2(−/−)Msh6(−/−) and Msh2(−/−)Msh6(−/−)Msh3(−/−) mice are indistinguishable from Msh2(−/−) mice, suggesting that MSH2 plays the critical role in protecting T cells from malignant transformation, presumably because it is essential for the formation of stable MutSα heterodimers that maintain genomic stability. The similar defects on switching in Msh2(−/−), Msh2(−/−)Msh6(−/−) and Msh2(−/−)Msh6(−/−)Msh3(−/−) mice confirm that MutSα but not MutSβ plays an important role in CSR. Analysis of SHM in Msh2(−/−)Msh6(−/−) mice not only confirmed the error-prone role of MutSα in the generation of strand biased mutations at A:T bases, but also revealed an error-free role of MutSα when repairing some of the dU:G mispairs generated by AID on both DNA strands. We propose a model for the role of MutSα at the immunoglobulin locus where the local balance of error-free and error-prone repair has an impact in the spectrum of mutations introduced during Phase 2 of SHM. Public Library of Science 2010-06-17 /pmc/articles/PMC2887398/ /pubmed/20567595 http://dx.doi.org/10.1371/journal.pone.0011182 Text en Roa et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Roa, Sergio
Li, Ziqiang
Peled, Jonathan U.
Zhao, Chunfang
Edelmann, Winfried
Scharff, Matthew D.
MSH2/MSH6 Complex Promotes Error-Free Repair of AID-Induced dU:G Mispairs as well as Error-Prone Hypermutation of A:T Sites
title MSH2/MSH6 Complex Promotes Error-Free Repair of AID-Induced dU:G Mispairs as well as Error-Prone Hypermutation of A:T Sites
title_full MSH2/MSH6 Complex Promotes Error-Free Repair of AID-Induced dU:G Mispairs as well as Error-Prone Hypermutation of A:T Sites
title_fullStr MSH2/MSH6 Complex Promotes Error-Free Repair of AID-Induced dU:G Mispairs as well as Error-Prone Hypermutation of A:T Sites
title_full_unstemmed MSH2/MSH6 Complex Promotes Error-Free Repair of AID-Induced dU:G Mispairs as well as Error-Prone Hypermutation of A:T Sites
title_short MSH2/MSH6 Complex Promotes Error-Free Repair of AID-Induced dU:G Mispairs as well as Error-Prone Hypermutation of A:T Sites
title_sort msh2/msh6 complex promotes error-free repair of aid-induced du:g mispairs as well as error-prone hypermutation of a:t sites
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2887398/
https://www.ncbi.nlm.nih.gov/pubmed/20567595
http://dx.doi.org/10.1371/journal.pone.0011182
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