• Title of article

    Positive and Negative Roles of Homologous Recombination in the Maintenance of Genome Stability in Saccharomyces cerevisiae

  • Author/Authors

    Yoshida، Jumpei نويسنده , , Umezu، Keiko نويسنده , , Maki، Hisaji نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2003
  • Pages
    -30
  • From page
    31
  • To page
    0
  • Abstract
    In previous studies of the loss of heterozygosity (LOH), we analyzed a hemizygous URA3 marker on chromosome III in S. cerevisiae and showed that homologous recombination is involved in processes that lead to LOH in multiple ways, including allelic recombination, chromosome size alterations, and chromosome loss. To investigate the role of homologous recombination more precisely, we examined LOH events in rad50(delta), rad51(delta), rad52(delta), rad50(delta) rad52(delta), and rad51(delta) rad52(delta) mutants. As compared to Rad+ cells, the frequency of LOH was significantly increased in all mutants, and most events were chromosome loss. Other LOH events were differentially affected in each mutant: the frequencies of all types of recombination were decreased in rad52 mutants and enhanced in rad50 mutants. The rad51 mutation increased the frequency of ectopic but not allelic recombination. Both the rad52 and rad51 mutations increased the frequency of intragenic point mutations ~25-fold, suggesting that alternative mutagenic pathways partially substitute for homologous recombination. Overall, these results indicate that all of the genes are required for chromosome maintenance and that they most likely function in homologous recombination between sister chromatids. In contrast, other recombination pathways can occur at a substantial level even in the absence of one of the genes and contribute to generating various chromosome rearrangements.
  • Keywords
    Oligotrophic soils , N deposition , Ectomycorrhizae , Pine barrens , Indicator species
  • Journal title
    GENETICS
  • Serial Year
    2003
  • Journal title
    GENETICS
  • Record number

    90907