Terasawa Masahiro, Ogawa Tomoko, Tsukamoto Yasumasa, Ogawa Hideyuki
Iwate College of Nursing, Ohgama, Takizawa, Iwate, Japan.
Genes Genet Syst. 2008 Jun;83(3):209-17. doi: 10.1266/ggs.83.209.
Meiotic recombination is initiated by the introduction of DNA double-strand breaks (DSBs) at recombination hotspots. DSB ends are resected to yield ssDNA, which is used in a homology search. Sae2p, which is involved in the resection of DSB ends, is phosphorylated by the Mec1p and Tel1p kinases during meiosis. To clarify the role of Sae2p phosphorylation in meiotic recombination, three mutants with alanine substitutions (at two putative Mec1/Tel1 phosphorylation sites near the N terminus, at three sites near the C terminus or at all five sites) were constructed. Analysis of DSB ends during meiotic recombination demonstrated that phosphorylation of the three C-terminal phosphorylation sites is necessary for DSB end resection and that phosphorylation of the two N-terminal phosphorylation sites is required for the efficient initiation of DSB end resection. Sae2p was localized on meiotic chromosomes in the rad50S and mre11-H125R mutants, which accumulate DSB ends. Alanine substitutions of all phosphorylation sites did not affect localization of Sae2p on meiotic chromosomes. Although colocalization of Sae2p with Mre11p and recombinant formation were observed in the N-terminally mutated and the C-terminally mutated strains, these processes were drastically impaired in the quintuple mutant. These results indicate that phosphorylation of Sae2p is required to initiate resection and to improve the efficiency of resection through cooperation with the Mre11-Rad50-Xrs2 complex.
减数分裂重组由重组热点处DNA双链断裂(DSB)的引入引发。DSB末端被切除以产生单链DNA(ssDNA),其用于同源性搜索。参与DSB末端切除的Sae2p在减数分裂过程中被Mec1p和Tel1p激酶磷酸化。为阐明Sae2p磷酸化在减数分裂重组中的作用,构建了三个丙氨酸替代突变体(在靠近N端的两个假定的Mec1/Tel1磷酸化位点、靠近C端的三个位点或所有五个位点)。减数分裂重组过程中DSB末端的分析表明,三个C端磷酸化位点的磷酸化对于DSB末端切除是必需的,而两个N端磷酸化位点的磷酸化是DSB末端切除有效起始所必需的。Sae2p定位于积累DSB末端的rad50S和mre11-H125R突变体的减数分裂染色体上。所有磷酸化位点的丙氨酸替代并不影响Sae2p在减数分裂染色体上的定位。尽管在N端突变和C端突变菌株中观察到Sae2p与Mre11p共定位以及重组形成,但在五重突变体中这些过程严重受损。这些结果表明,Sae2p的磷酸化是起始切除并通过与Mre11-Rad50-Xrs2复合物协同作用提高切除效率所必需的。