Robust designation of meiotic crossover sites by CDK-2 through phosphorylation of the MutSγ complex

CDK-2 通过 MutSγ 复合物的磷酸化来可靠地指定减数分裂交叉位点

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作者:Jocelyn Haversat, Alexander Woglar, Kayla Klatt, Chantal C Akerib, Victoria Roberts, Shin-Yu Chen, Swathi Arur, Anne M Villeneuve, Yumi Kim

Abstract

Crossover formation is essential for proper segregation of homologous chromosomes during meiosis. Here, we show that Caenorhabditis elegans cyclin-dependent kinase 2 (CDK-2) partners with cyclin-like protein COSA-1 to promote crossover formation by promoting conversion of meiotic double-strand breaks into crossover–specific recombination intermediates. Further, we identify MutSγ component MSH-5 as a CDK-2 phosphorylation target. MSH-5 has a disordered C-terminal tail that contains 13 potential CDK phosphosites and is required to concentrate crossover–promoting proteins at recombination sites. Phosphorylation of the MSH-5 tail appears dispensable in a wild-type background, but when MutSγ activity is partially compromised, crossover formation and retention of COSA-1 at recombination sites are exquisitely sensitive to phosphosite loss. Our data support a model in which robustness of crossover designation reflects a positive feedback mechanism involving CDK-2–mediated phosphorylation and scaffold-like properties of the MSH5 C-terminal tail, features that combine to promote full recruitment and activity of crossover–promoting complexes.

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