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Mlh1-Mlh3, a meiotic crossover and DNA mismatch repair factor,is a Msh2-Msh3-stimulated endonuclease

  • Maria V. Rogacheva
  • , Carol M. Manhart
  • , G. Chen
  • , Alba Guarne
  • , Jennifer Surtees
  • , Eric Alani
  • Cornell University
  • McMaster University

Research output: Contribution to journalArticlepeer-review

113 Scopus citations

Abstract

Crossing over between homologous chromosomes is initiated in meiotic prophase in most sexually reproducing organisms by the appearance of programmed double strand breaks throughout the genome. In Saccharomyces cerevisiae the double-strand breaks are resected to form three prime single-strand tails that primarily invade complementary sequences in unbroken homologs. These invasion intermediates are converted into double Holliday junctions and then resolved into crossovers that facilitate homolog segregation during Meiosis I. Work in yeast suggests that Msh4-Msh5 stabilizes invasion intermediates and double Holliday junctions, which are resolved into crossovers in steps requiring Sgs1 helicase, Exo1, and a putative endonuclease activity encoded by theDNAmismatch repair factor Mlh1-Mlh3. We purified Mlh1-Mlh3 and showed that it is a metal-dependent and Msh2-Msh3-stimulated endonuclease that makes single-strand breaks in supercoiled DNA. These observations support a direct role for an Mlh1-Mlh3 endonuclease activity in resolving recombination intermediates and in DNA mismatch repair.

Original languageEnglish
Pages (from-to)5664-5673
Number of pages10
JournalJournal of Biological Chemistry
Volume289
Issue number9
DOIs
StatePublished - Feb 28 2014

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