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Mutations in the MutSα interaction interface of MLH1 can abolish DNA mismatch repair

MutLα, a heterodimer of MLH1 and PMS2, plays a central role in human DNA mismatch repair. It interacts ATP-dependently with the mismatch detector MutSα and assembles and controls further repair enzymes. We tested if the interaction of MutLα with DNA-bound MutSα is impaired by cancer-associated mutat...

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Autores principales: Plotz, Guido, Welsch, Christoph, Giron-Monzon, Luis, Friedhoff, Peter, Albrecht, Mario, Piiper, Albrecht, Biondi, Ricardo M., Lengauer, Thomas, Zeuzem, Stefan, Raedle, Jochen
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1747184/
https://www.ncbi.nlm.nih.gov/pubmed/17135187
http://dx.doi.org/10.1093/nar/gkl944
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author Plotz, Guido
Welsch, Christoph
Giron-Monzon, Luis
Friedhoff, Peter
Albrecht, Mario
Piiper, Albrecht
Biondi, Ricardo M.
Lengauer, Thomas
Zeuzem, Stefan
Raedle, Jochen
author_facet Plotz, Guido
Welsch, Christoph
Giron-Monzon, Luis
Friedhoff, Peter
Albrecht, Mario
Piiper, Albrecht
Biondi, Ricardo M.
Lengauer, Thomas
Zeuzem, Stefan
Raedle, Jochen
author_sort Plotz, Guido
collection PubMed
description MutLα, a heterodimer of MLH1 and PMS2, plays a central role in human DNA mismatch repair. It interacts ATP-dependently with the mismatch detector MutSα and assembles and controls further repair enzymes. We tested if the interaction of MutLα with DNA-bound MutSα is impaired by cancer-associated mutations in MLH1, and identified one mutation (Ala128Pro) which abolished interaction as well as mismatch repair activity. Further examinations revealed three more residues whose mutation interfered with interaction. Homology modelling of MLH1 showed that all residues clustered in a small accessible surface patch, suggesting that the major interaction interface of MutLα for MutSα is located on the edge of an extensive β-sheet that backs the MLH1 ATP binding pocket. Bioinformatic analysis confirmed that this patch corresponds to a conserved potential protein–protein interaction interface which is present in both human MLH1 and its E.coli homologue MutL. MutL could be site-specifically crosslinked to MutS from this patch, confirming that the bacterial MutL–MutS complex is established by the corresponding interface in MutL. This is the first study that identifies the conserved major MutLα–MutSα interaction interface in MLH1 and demonstrates that mutations in this interface can affect interaction and mismatch repair, and thereby can also contribute to cancer development.
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spelling pubmed-17471842006-12-26 Mutations in the MutSα interaction interface of MLH1 can abolish DNA mismatch repair Plotz, Guido Welsch, Christoph Giron-Monzon, Luis Friedhoff, Peter Albrecht, Mario Piiper, Albrecht Biondi, Ricardo M. Lengauer, Thomas Zeuzem, Stefan Raedle, Jochen Nucleic Acids Res Molecular Biology MutLα, a heterodimer of MLH1 and PMS2, plays a central role in human DNA mismatch repair. It interacts ATP-dependently with the mismatch detector MutSα and assembles and controls further repair enzymes. We tested if the interaction of MutLα with DNA-bound MutSα is impaired by cancer-associated mutations in MLH1, and identified one mutation (Ala128Pro) which abolished interaction as well as mismatch repair activity. Further examinations revealed three more residues whose mutation interfered with interaction. Homology modelling of MLH1 showed that all residues clustered in a small accessible surface patch, suggesting that the major interaction interface of MutLα for MutSα is located on the edge of an extensive β-sheet that backs the MLH1 ATP binding pocket. Bioinformatic analysis confirmed that this patch corresponds to a conserved potential protein–protein interaction interface which is present in both human MLH1 and its E.coli homologue MutL. MutL could be site-specifically crosslinked to MutS from this patch, confirming that the bacterial MutL–MutS complex is established by the corresponding interface in MutL. This is the first study that identifies the conserved major MutLα–MutSα interaction interface in MLH1 and demonstrates that mutations in this interface can affect interaction and mismatch repair, and thereby can also contribute to cancer development. Oxford University Press 2006-12 2006-11-28 /pmc/articles/PMC1747184/ /pubmed/17135187 http://dx.doi.org/10.1093/nar/gkl944 Text en © 2006 The Author(s).
spellingShingle Molecular Biology
Plotz, Guido
Welsch, Christoph
Giron-Monzon, Luis
Friedhoff, Peter
Albrecht, Mario
Piiper, Albrecht
Biondi, Ricardo M.
Lengauer, Thomas
Zeuzem, Stefan
Raedle, Jochen
Mutations in the MutSα interaction interface of MLH1 can abolish DNA mismatch repair
title Mutations in the MutSα interaction interface of MLH1 can abolish DNA mismatch repair
title_full Mutations in the MutSα interaction interface of MLH1 can abolish DNA mismatch repair
title_fullStr Mutations in the MutSα interaction interface of MLH1 can abolish DNA mismatch repair
title_full_unstemmed Mutations in the MutSα interaction interface of MLH1 can abolish DNA mismatch repair
title_short Mutations in the MutSα interaction interface of MLH1 can abolish DNA mismatch repair
title_sort mutations in the mutsα interaction interface of mlh1 can abolish dna mismatch repair
topic Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1747184/
https://www.ncbi.nlm.nih.gov/pubmed/17135187
http://dx.doi.org/10.1093/nar/gkl944
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