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蛋白磷酸酶4在酿酒酵母中促进减数分裂染色体轴形成的Hop1组装过程中的减数分裂DNA双链断裂非依赖作用。

Meiotic DNA double-strand break-independent role of protein phosphatase 4 in Hop1 assembly to promote meiotic chromosome axis formation in budding yeast.

作者信息

Li Ke, Yoshimura Kei, Shinohara Miki

机构信息

Institute for Protein Research, Osaka University, Osaka, Japan.

Department of Bioscience, Graduate School of Science, Osaka University, Osaka, Japan.

出版信息

Genes Cells. 2023 Aug;28(8):595-614. doi: 10.1111/gtc.13049. Epub 2023 May 27.

Abstract

Dynamic changes in chromosomal structure that occur during meiotic prophase play an important role in the progression of meiosis. Among them, meiosis-specific chromosomal axis-loop structures are important as a scaffold for integrated control between the meiotic recombination reaction and the associated checkpoint system to ensure accurate chromosome segregation. However, the molecular mechanism of the initial step of chromosome axis-loop construction is not well understood. Here, we showed that, in budding yeast, protein phosphatase 4 (PP4) that primarily counteracts Mec1/Tel1 phosphorylation is required to promote the assembly of a chromosomal axis component Hop1 and Red1 onto meiotic chromatin via interaction with Hop1. PP4, on the other hand, less affects Rec8 assembly. Notably, unlike the previously known function of PP4, this PP4 function in Hop1/Red1 assembly was independent of meiotic DSB-dependent Tel1/Mec1 kinase activities. The defect in Hop1/Red1 assembly in the absence of PP4 function was not suppressed by dysfunction of Pch2, which removes Hop1 protein from the chromosome axis, suggesting that PP4 is required for the initial step of chromatin loading of Hop1 rather than stabilization of Hop1 on axes. These results indicate phosphorylation/dephosphorylation-mediated regulation of Hop1 recruitment onto chromatin during chromosome axis construction before meiotic double-strand break formation.

摘要

减数分裂前期发生的染色体结构动态变化在减数分裂进程中发挥着重要作用。其中,减数分裂特异性染色体轴-环结构作为减数分裂重组反应与相关检查点系统之间综合调控的支架,对于确保准确的染色体分离至关重要。然而,染色体轴-环构建初始步骤的分子机制尚不清楚。在此,我们表明,在芽殖酵母中,主要对抗Mec1/Tel1磷酸化的蛋白磷酸酶4(PP4)通过与Hop1相互作用,促进染色体轴成分Hop1和Red1组装到减数分裂染色质上。另一方面,PP4对Rec8组装的影响较小。值得注意的是,与PP4先前已知的功能不同,PP4在Hop1/Red1组装中的这种功能独立于减数分裂双链断裂依赖性Tel1/Mec1激酶活性。在没有PP4功能的情况下,Hop1/Red1组装缺陷并未因Pch2功能障碍而得到抑制,Pch2可从染色体轴上移除Hop1蛋白,这表明PP4是Hop1染色质加载初始步骤所必需的,而非Hop1在轴上的稳定所必需。这些结果表明,在减数分裂双链断裂形成之前的染色体轴构建过程中,存在磷酸化/去磷酸化介导的Hop1招募到染色质上的调控。

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