首页> 美国卫生研究院文献>PLoS Genetics >Dot1-Dependent Histone H3K79 Methylation Promotes Activation of the Mek1 Meiotic Checkpoint Effector Kinase by Regulating the Hop1 Adaptor
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Dot1-Dependent Histone H3K79 Methylation Promotes Activation of the Mek1 Meiotic Checkpoint Effector Kinase by Regulating the Hop1 Adaptor

机译:Dot1依赖组蛋白H3K79甲基化通过调节Hop1适配器促进Mek1减数分裂检查点效应子激酶的激活。

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摘要

During meiosis, accurate chromosome segregation relies on the proper interaction between homologous chromosomes, including synapsis and recombination. The meiotic recombination checkpoint is a quality control mechanism that monitors those crucial events. In response to defects in synapsis and/or recombination, this checkpoint blocks or delays progression of meiosis, preventing the formation of aberrant gametes. Meiotic recombination occurs in the context of chromatin and histone modifications, which play crucial roles in the maintenance of genomic integrity. Here, we unveil the role of Dot1-dependent histone H3 methylation at lysine 79 (H3K79me) in this meiotic surveillance mechanism. We demonstrate that the meiotic checkpoint function of Dot1 relies on H3K79me because, like the dot1 deletion, H3-K79A or H3-K79R mutations suppress the checkpoint-imposed meiotic delay of a synapsis-defective zip1 mutant. Moreover, by genetically manipulating Dot1 catalytic activity, we find that the status of H3K79me modulates the meiotic checkpoint response. We also define the phosphorylation events involving activation of the meiotic checkpoint effector Mek1 kinase. Dot1 is required for Mek1 autophosphorylation, but not for its Mec1/Tel1-dependent phosphorylation. Dot1-dependent H3K79me also promotes Hop1 activation and its proper distribution along zip1 meiotic chromosomes, at least in part, by regulating Pch2 localization. Furthermore, HOP1 overexpression bypasses the Dot1 requirement for checkpoint activation. We propose that chromatin remodeling resulting from unrepaired meiotic DSBs and/or faulty interhomolog interactions allows Dot1-mediated H3K79-me to exclude Pch2 from the chromosomes, thus driving localization of Hop1 along chromosome axes and enabling Mek1 full activation to trigger downstream responses, such as meiotic arrest.
机译:在减数分裂过程中,准确的染色体分离取决于同源染色体之间的正确相互作用,包括突触和重组。减数分裂重组检查点是监视那些关键事件的质量控制机制。响应突触和/或重组缺陷,该检查点阻止或延缓减数分裂的进行,防止异常配子的形成。减数分裂重组发生在染色质和组蛋白修饰的背景下,它们在维持基因组完整性方面起着至关重要的作用。在这里,我们揭示了赖氨酸79(H3K79me)上Dot1依赖的组蛋白H3甲基化在这种减数分裂监测机制中的作用。我们证明Dot1的减数分裂检查点功能依赖于H3K79me,因为像dot1缺失一样,H3-K79A或H3-K79R突变抑制突触缺陷zip1突变体的检查点施加的减数分裂延迟。此外,通过遗传操纵Dot1催化活性,我们发现H3K79me的状态调节减数分裂检查点反应。我们还定义了涉及减数分裂检查点效应器Mek1激酶激活的磷酸化事件。 Mek1自磷酸化需要Dot1,但Mec1 / Tel1依赖的磷酸化不需要Dot1。依赖Dot1的H3K79me还至少部分地通过调节Pch2定位来促进Hop1激活及其在zip1减数分裂染色体上的正确分布。此外,HOP1过表达会绕过Dot1对检查点激活的要求。我们建议由未修复的减数分裂DSB和/或错误的同源同源物相互作用导致的染色质重塑允许Dot1介导的H3K79-me从染色体中排除Pch2,从而驱动Hop1沿着染色体轴定位并使Mek1完全激活以触发下游响应,例如减数分裂逮捕。

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