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Characterization of a potent dominant negative mutant variant of Rad51 in Ustilago maydis
Affiliation:1. Department of Clinical Biochemistry, Rigshospitalet, Blegdamsvej 9, DK-2100 Copenhagen, Denmark;2. The Copenhagen General Population Study, Herlev and Gentofte Hospital, Herlev Ringvej 75, DK-2730 Herlev, Denmark;3. Department of Clinical Biochemistry, Herlev and Gentofte Hospital, Herlev Ringvej 75, DK-2730 Herlev, Denmark;4. The Copenhagen City Heart Study, Frederiksberg Hospital, Nordre Fasanvej 57, DK-2000 Frederiksberg, Denmark;5. Copenhagen University Hospitals and Faculty of Health and Medical Sciences, University of Copenhagen, Denmark;1. Department of Biological Sciences, University of Texas at El Paso, El Paso, TX 79968, USA;2. Schulze Center for Novel Therapeutics, Mayo Clinic, Rochester, MN 55905, USA
Abstract:Rad51 serves to maintain and protect integrity of the genome through its actions in DNA repair and replication fork protection. The active form of Rad51 is a nucleoprotein filament consisting of chains of protomer units arranged linearly along single-stranded DNA. In a mutant screen using Ustilago maydis as an experimental system we identified a novel variant of Rad51, in which an amino acid change near the protomer–protomer interaction interface confers a strong trans dominant inhibitory effect on resistance to DNA damaging agents and proficiency in homologous recombination. Modeling studies of the mutated residue D161Y suggested that steric interference with surrounding residues was the likely cause of the inhibitory effect. Changes of two nearby residues, predicted from the modeling to minimize steric clashes, mitigated the inhibition of DNA repair. Direct testing of purified Rad51D161Y protein in defined biochemical reactions revealed it to be devoid of DNA-binding activity itself, but capable of interfering with Rad51WT in formation and maintenance of nucleoprotein filaments on single-stranded DNA and in DNA strand exchange. Rad51D161Y protein appears to be unable to self-associate in solution and defective in forming complexes with the U. maydis BRCA2 ortholog.
Keywords:Rad51  BRCA2  Dominant negative  DNA repair  Homologous recombination  DEB"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kw0035"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  diepoxybutane  HR"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kw0045"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  homologous recombination  MMS"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kw0055"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  methyl methanesulfonate  ss"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kw0065"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  single-strand  UV"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kw0075"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  ultraviolet light
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