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Fundamental cell cycle kinases collaborate to ensure timely destruction of the synaptonemal complex during meiosis

机译:基本细胞周期激酶协同作用以确保减数分裂期间及时破坏突触复合物

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摘要

The synaptonemal complex (SC) is a proteinaceous macromolecular assembly that forms during meiotic prophase I and mediates adhesion of paired homologous chromosomes along their entire lengths. Although prompt disassembly of the SC during exit from prophase I is a landmark event of meiosis, the underlying mechanism regulating SC destruction has remained elusive. Here, we show that DDK (Dbf4‐dependent Cdc7 kinase) is central to SC destruction. Upon exit from prophase I, Dbf4, the regulatory subunit of DDK, directly associates with and is phosphorylated by the Polo‐like kinase Cdc5. In parallel, upregulated CDK1 activity also targets Dbf4. An enhanced Dbf4‐Cdc5 interaction pronounced phosphorylation of Dbf4 and accelerated SC destruction, while reduced/abolished Dbf4 phosphorylation hampered destruction of SC proteins. SC destruction relieved meiotic inhibition of the ubiquitous recombinase Rad51, suggesting that the mitotic recombination machinery is reactivated following prophase I exit to repair any persisting meiotic DNA double‐strand breaks. Taken together, we propose that the concerted action of DDK, Polo‐like kinase, and CDK1 promotes efficient SC destruction at the end of prophase I to ensure faithful inheritance of the genome.
机译:突触复合物(SC)是一种蛋白质大分子组装,在减数分裂前期I期间形成,并介导成对的同源染色体沿其整个长度的粘附。尽管在前期I退出过程中SC的快速拆卸是减数分裂的标志性事件,但调节SC破坏的潜在机制仍然难以捉摸。在这里,我们显示DDK(依赖Dbf4的Cdc7激酶)对于SC破坏至关重要。从前期I退出后,DDK的调节亚基Dbf4与Polo样激酶Cdc5直接缔合并被其磷酸化。同时,上调的CDK1活性也靶向Dbf4。 Dbf4-Cdc5相互作用增强表明Dbf4磷酸化并加速了SC的破坏,而减少/消除的Dbf4磷酸化则阻碍了SC蛋白的破坏。 SC破坏消除了对普遍存在的重组酶Rad51的减数分裂抑制,这表明有丝分裂重组机制在前期I退出后被重新激活,以修复任何持久的减数分裂DNA双链断裂。综上所述,我们认为DDK,Polo样激酶和CDK1的协同作用可在前期I结束时促进有效的SC破坏,以确保基因组的忠实遗传。

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