Whitehead Institute for Biomedical Research, Cambridge, MA 02142, USA.
Dev Cell. 2010 Oct 19;19(4):599-611. doi: 10.1016/j.devcel.2010.09.006.
The faithful alignment of homologous chromosomes during meiotic prophase requires the coordination of DNA double-strand break (DSB) repair with large-scale chromosome reorganization. Here we identify the phosphatase PP4 (Pph3/Psy2) as a mediator of this process in Saccharomyces cerevisiae. In pp4 mutants, early stages of crossover repair and homology-independent pairing of centromeres are coordinately blocked. We traced the loss of centromere pairing to the persistent phosphorylation of the chromosomal protein Zip1 on serine 75. Zip1-S75 is a consensus site for the ATR-like checkpoint kinase Mec1, and centromere pairing is restored in mec1 mutants. Importantly, Zip1-S75 phosphorylation does not alter chromosome synapsis or DSB repair, indicating that Mec1 separates centromere pairing from the other functions of Zip1. The centromeric localization and persistent activity of PP4 during meiotic prophase suggest a model whereby Zip1-S75 phosphorylation dynamically destabilizes homology-independent centromere pairing in response to recombination initiation, thereby coupling meiotic chromosome dynamics to DSB repair.
在减数分裂前期,同源染色体的准确配对需要将 DNA 双链断裂(DSB)修复与大规模染色体重组协调起来。在这里,我们确定磷酸酶 PP4(Pph3/Psy2)是酿酒酵母中这一过程的介质。在 pp4 突变体中,交叉修复的早期阶段和着丝粒的同源非依赖性配对被协调地阻断。我们发现,着丝粒配对的丧失归因于染色体蛋白 Zip1 丝氨酸 75 上的持续磷酸化。Zip1-S75 是 ATR 样检查点激酶 Mec1 的一个保守位点,并且在 mec1 突变体中恢复了着丝粒配对。重要的是,Zip1-S75 磷酸化不会改变染色体联会或 DSB 修复,表明 Mec1 将着丝粒配对与 Zip1 的其他功能分开。在减数分裂前期,PP4 在着丝粒上的定位和持续活性表明了这样一种模型,即 Zip1-S75 磷酸化动态地破坏了重组起始时同源非依赖性着丝粒配对,从而将减数分裂染色体动力学与 DSB 修复联系起来。