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Pch2定位决定因素的表征揭示了其在减数分裂重组检查点中的非核仁依赖性作用。

Characterization of Pch2 localization determinants reveals a nucleolar-independent role in the meiotic recombination checkpoint.

作者信息

Herruzo Esther, Santos Beatriz, Freire Raimundo, Carballo Jesús A, San-Segundo Pedro A

机构信息

Instituto de Biología Funcional y Genómica (IBFG), Consejo Superior de Investigaciones Científicas (CSIC) and University of Salamanca, 37007, Salamanca, Spain.

Departamento de Microbiología y Genética, University of Salamanca, 37007, Salamanca, Spain.

出版信息

Chromosoma. 2019 Sep;128(3):297-316. doi: 10.1007/s00412-019-00696-7. Epub 2019 Mar 12.

Abstract

The meiotic recombination checkpoint blocks meiotic cell cycle progression in response to synapsis and/or recombination defects to prevent aberrant chromosome segregation. The evolutionarily conserved budding yeast Pch2 AAA+ ATPase participates in this pathway by supporting phosphorylation of the Hop1 adaptor at T318. In the wild type, Pch2 localizes to synapsed chromosomes and to the unsynapsed rDNA region (nucleolus), excluding Hop1. In contrast, in synaptonemal complex (SC)-defective zip1Δ mutants, which undergo checkpoint activation, Pch2 is detected only on the nucleolus. Alterations in some epigenetic marks that lead to Pch2 dispersion from the nucleolus suppress zip1Δ-induced checkpoint arrest. These observations have led to the notion that Pch2 nucleolar localization could be important for the meiotic recombination checkpoint. Here we investigate how Pch2 chromosomal distribution impacts checkpoint function. We have generated and characterized several mutations that alter Pch2 localization pattern resulting in aberrant Hop1 distribution and compromised meiotic checkpoint response. Besides the AAA+ signature, we have identified a basic motif in the extended N-terminal domain critical for Pch2's checkpoint function and localization. We have also examined the functional relevance of the described Orc1-Pch2 interaction. Both proteins colocalize in the rDNA, and Orc1 depletion during meiotic prophase prevents Pch2 targeting to the rDNA allowing unwanted Hop1 accumulation on this region. However, Pch2 association with SC components remains intact in the absence of Orc1. We finally show that checkpoint activation is not affected by the lack of Orc1 demonstrating that, in contrast to previous hypotheses, nucleolar localization of Pch2 is actually dispensable for the meiotic checkpoint.

摘要

减数分裂重组检查点会响应联会和/或重组缺陷而阻断减数分裂细胞周期进程,以防止异常染色体分离。进化上保守的芽殖酵母Pch2 AAA+ ATP酶通过支持衔接蛋白Hop1在T318位点的磷酸化参与该途径。在野生型中,Pch2定位于联会的染色体和未联会的rDNA区域(核仁),而不包括Hop1。相比之下,在经历检查点激活的联会复合体(SC)缺陷型zip1Δ突变体中,仅在核仁中检测到Pch2。某些表观遗传标记的改变导致Pch2从核仁中分散,从而抑制zip1Δ诱导的检查点停滞。这些观察结果导致了这样一种观点,即Pch2核仁定位可能对减数分裂重组检查点很重要。在这里,我们研究了Pch2染色体分布如何影响检查点功能。我们已经产生并鉴定了几个改变Pch2定位模式的突变,这些突变导致Hop1分布异常和减数分裂检查点反应受损。除了AAA+ 特征外,我们还在扩展的N端结构域中鉴定出一个对Pch2的检查点功能和定位至关重要的碱性基序。我们还研究了所描述的Orc1 - Pch2相互作用的功能相关性。两种蛋白质在rDNA中共定位,减数分裂前期Orc1的缺失阻止了Pch2靶向rDNA,导致该区域出现不必要的Hop1积累。然而,在没有Orc1的情况下,Pch2与SC成分的结合仍然完好无损。我们最终表明,检查点激活不受Orc1缺失的影响,这表明与先前的假设相反,Pch2的核仁定位实际上对于减数分裂检查点是可有可无的。

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