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Frequent and efficient use of the sister chromatid for DNA double-strand break repair during budding yeast meiosis
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نویسنده
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goldfarb t. ,lichten m.
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منبع
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plos biology - 2010 - دوره : 8 - شماره : 10
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چکیده
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Recombination between homologous chromosomes of different parental origin (homologs) is necessary for their accurate segregation during meiosis. it has been suggested that meiotic inter-homolog recombination is promoted by a barrier to inter-sister-chromatid recombination,imposed by meiosis-specific components of the chromosome axis. consistent with this,measures of holliday junction-containing recombination intermediates (joint molecules [jms]) show a strong bias towards inter-homolog and against inter-sister jms. however,recombination between sister chromatids also has an important role in meiosis. the genomes of diploid organisms in natural populations are highly polymorphic for insertions and deletions,and meiotic double-strand breaks (dsbs) that form within such polymorphic regions must be repaired by inter-sister recombination. efforts to study inter-sister recombination during meiosis,in particular to determine recombination frequencies and mechanisms,have been constrained by the inability to monitor the products of inter-sister recombination. we present here molecular-level studies of inter-sister recombination during budding yeast meiosis. we examined events initiated by dsbs in regions that lack corresponding sequences on the homolog,and show that these dsbs are efficiently repaired by inter-sister recombination. this occurs with the same timing as inter-homolog recombination,but with reduced (2- to 3-fold) yields of jms. loss of the meiotic-chromosome-axis-associated kinase mek1 accelerates inter-sister dsb repair and markedly increases inter-sister jm frequencies. furthermore,inter-sister jms formed in mek1δ mutants are preferentially lost,while inter-homolog jms are maintained. these findings indicate that inter-sister recombination occurs frequently during budding yeast meiosis,with the possibility that up to one-third of all recombination events occur between sister chromatids. we suggest that a mek1-dependent reduction in the rate of inter-sister repair,combined with the destabilization of inter-sister jms,promotes inter-homolog recombination while retaining the capacity for inter-sister recombination when inter-homolog recombination is not possible.
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آدرس
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laboratory of biochemistry and molecular biology,center for cancer research,national cancer institute,bethesda,md, United States, laboratory of biochemistry and molecular biology,center for cancer research,national cancer institute,bethesda,md, United States
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Authors
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