Heteroduplex rejection during single-strand annealing requires Sgs1 helicase and mismatch repair proteins Msh2 and Msh6 but not Pms1
- 15 June 2004
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 101 (25) , 9315-9320
- https://doi.org/10.1073/pnas.0305749101
Abstract
Recombination between moderately divergent DNA sequences is impaired compared with identical sequences. In yeast, an HO endonuclease-induced double-strand break can be repaired by single-strand annealing (SSA) between flanking homologous sequences. A 3% sequence divergence between 205-bp sequences flanking the double-strand break caused a 6-fold reduction in repair compared with identical sequences. This reduction in heteroduplex rejection was suppressed in a mismatch repair-defective msh6 Delta strain and partially suppressed in an msh2 separation-of-function mutant. In mlh1 Delta strains, heteroduplex rejection was greater than in msh6 Delta strains but less than in wild type. Deleting PMS1, MLH2,or MLH3 had no effect on heteroduplex rejection, but a pms1 Delta mlh2 Delta mlh3 Delta triple mutant resembled mlh1 Delta. However, correction of the mismatches within heteroduplex SSA intermediates required PMS1 and MLH1 to the same extent as MSH2 and MSH6. An SSA competition assay in which either diverged or identical repeats can be used for repair showed that heteroduplex DNA is likely to be unwound rather than degraded. This conclusion is supported by the finding that deleting the SGS1 helicase also suppressed heteroduplex rejection.Keywords
This publication has 73 references indexed in Scilit:
- The Bloom's Syndrome Helicase Interacts Directly with the Human DNA Mismatch Repair Protein hMSH6Biological Chemistry, 2003
- Characterization of RAD51-Independent Break-Induced Replication That Acts Preferentially with Short Homologous SequencesMolecular and Cellular Biology, 2002
- Functional organization of the yeast proteome by systematic analysis of protein complexesNature, 2002
- exo1-Dependent Mutator Mutations: Model System for Studying Functional Interactions in Mismatch RepairMolecular and Cellular Biology, 2001
- Genetic Requirements for RAD51- andRAD54-Independent Break-Induced Replication Repair of a Chromosomal Double-Strand BreakMolecular and Cellular Biology, 2001
- The Saccharomyces cerevisiae Msh2 Mismatch Repair Protein Localizes to Recombination Intermediates In VivoMolecular Cell, 2000
- Transformation of MutL by ATP Binding and HydrolysisCell, 1999
- Crystal Structure and ATPase Activity of MutLCell, 1998
- Enhancement of MSH2–MSH3-mediated mismatch recognition by the yeast MLH1–PMS1 complexCurrent Biology, 1997
- Redundancy of Saccharomyces cerevisiae MSH3 and MSH6 in MSH2-dependent mismatch repair.Genes & Development, 1996