Literature DB >> 33453991

Genetic evidence for the involvement of mismatch repair proteins, PMS2 and MLH3, in a late step of homologous recombination.

Md Maminur Rahman1, Mohiuddin Mohiuddin1, Islam Shamima Keka1, Kousei Yamada1, Masataka Tsuda1, Hiroyuki Sasanuma1, Jessica Andreani2, Raphael Guerois2, Valerie Borde3, Jean-Baptiste Charbonnier2, Shunichi Takeda4.   

Abstract

Homologous recombination (HR) repairs DNA double-strand breaks using intact homologous sequences as template DNA. Broken DNA and intact homologous sequences form joint molecules (JMs), including Holliday junctions (HJs), as HR intermediates. HJs are resolved to form crossover and noncrossover products. A mismatch repair factor, MLH3 endonuclease, produces the majority of crossovers during meiotic HR, but it remains elusive whether mismatch repair factors promote HR in nonmeiotic cells. We disrupted genes encoding the MLH3 and PMS2 endonucleases in the human B cell line, TK6, generating null MLH3-/- and PMS2-/- mutant cells. We also inserted point mutations into the endonuclease motif of MLH3 and PMS2 genes, generating endonuclease death MLH3DN/DN and PMS2EK/EK cells. MLH3-/- and MLH3DN/DN cells showed a very similar phenotype, a 2.5-fold decrease in the frequency of heteroallelic HR-dependent repair of restriction enzyme-induced double-strand breaks. PMS2-/- and PMS2EK/EK cells showed a phenotype very similar to that of the MLH3 mutants. These data indicate that MLH3 and PMS2 promote HR as an endonuclease. The MLH3DN/DN and PMS2EK/EK mutations had an additive effect on the heteroallelic HR. MLH3DN/DN/PMS2EK/EK cells showed normal kinetics of γ-irradiation-induced Rad51 foci but a significant delay in the resolution of Rad51 foci and a 3-fold decrease in the number of cisplatin-induced sister chromatid exchanges. The ectopic expression of the Gen1 HJ re-solvase partially reversed the defective heteroallelic HR of MLH3DN/DN/PMS2EK/EK cells. Taken together, we propose that MLH3 and PMS2 promote HR as endonucleases, most likely by processing JMs in mammalian somatic cells.
Copyright © 2020 © 2020 Rahman et al. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  GEN1; Holliday junction; MLH1; MLH3; MUS81; PMS2; endonuclease; homologous recombination; joint molecules; mutL homolog 1 (MLH1); mutL homolog 3 (MLH3); resolvase

Mesh:

Substances:

Year:  2020        PMID: 33453991      PMCID: PMC7762965          DOI: 10.1074/jbc.RA120.013521

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  86 in total

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Authors:  Anuja Mehta; James E Haber
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Authors:  S M Baker; C E Bronner; L Zhang; A W Plug; M Robatzek; G Warren; E A Elliott; J Yu; T Ashley; N Arnheim; R A Flavell; R M Liskay
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Authors:  K T Nishant; Aaron J Plys; Eric Alani
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7.  The HHpred interactive server for protein homology detection and structure prediction.

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3.  Molecular basis of the dual role of the Mlh1-Mlh3 endonuclease in MMR and in meiotic crossover formation.

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