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Mek1 Kinase Is Regulated To Suppress Double-Strand Break Repair between Sister Chromatids during Budding Yeast Meiosis

机译:调节Mek1激酶抑制发芽酵母减数分裂过程中姐妹染色单体之间的双链断裂修复。

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摘要

Mek1 is a meiosis-specific kinase in budding yeast which promotes recombination between homologous chromosomes by suppressing double-strand break (DSB) repair between sister chromatids. Previous work has shown that in the absence of the meiosis-specific recombinase gene, DMC1, cells arrest in prophase due to unrepaired DSBs and that Mek1 kinase activity is required in this situation to prevent repair of the breaks using sister chromatids. This work demonstrates that Mek1 is activated in response to DSBs by autophosphorylation of two conserved threonines, T327 and T331, in the Mek1 activation loop. Using a version of Mek1 that can be conditionally dimerized during meiosis, Mek1 function was shown to be promoted by dimerization, perhaps as a way of enabling autophosphorylation of the activation loop in trans. A putative HOP1-dependent dimerization domain within the C terminus of Mek1 has been identified. Dimerization alone, however, is insufficient for activation, as DSBs and Mek1 recruitment to the meiosis-specific chromosomal core protein Red1 are also necessary. Phosphorylation of S320 in the activation loop inhibits sister chromatid repair specifically in dmc1Δ-arrested cells. Ectopic dimerization of Mek1 bypasses the requirement for S320 phosphorylation, suggesting this phosphorylation is necessary for maintenance of Mek1 dimers during checkpoint-induced arrest.
机译:Mek1是发芽酵母中的减数分裂特异性激酶,可通过抑制姐妹染色单体之间的双链断裂(DSB)修复来促进同源染色体之间的重组。先前的工作表明,在没有减数分裂特异性重组酶基因 DMC1 的情况下,由于未修复的DSB导致细胞停滞在前期,在这种情况下需要Mek1激酶活性以防止使用姐妹染色单体。这项工作表明,Mek1激活环中两个保守的苏氨酸T327和T331自身磷酸化,从而响应DSB激活了Mek1。使用可以在减数分裂过程中有条件地二聚化的Mek1版本,可以证明二聚化可促进Mek1功能,这也许是使 trans 中激活环自动磷酸化的一种方式。已经确定了Mek1的C末端内依赖于 HOP1 的二聚结构域。但是,仅二聚化不足以激活,因为还需要DSB和Mek1募集到减数分裂特异的染色体核心蛋白Red1。激活环中S320的磷酸化可特异性抑制 dmc1 Δ阻滞细胞中的姊妹染色单体修复。 Mek1的异位二聚化绕过了S320磷酸化的要求,表明这种磷酸化对于在检查点诱发的逮捕期间维持Mek1二聚体是必需的。

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