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细胞周期依赖性的 polo 激酶 Cdc5 与 CENP-A 的结合有助于芽殖酵母中染色体的正确分离。

Cell cycle-dependent association of polo kinase Cdc5 with CENP-A contributes to faithful chromosome segregation in budding yeast.

机构信息

Genetics Branch, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892.

School of Biological and Chemical Sciences, Queen Mary University of London, London E1 4NS, United Kingdom.

出版信息

Mol Biol Cell. 2019 Apr 1;30(8):1020-1036. doi: 10.1091/mbc.E18-09-0584. Epub 2019 Feb 6.

Abstract

Evolutionarily conserved polo-like kinase, Cdc5 (Plk1 in humans), associates with kinetochores during mitosis; however, the role of cell cycle-dependent centromeric ( CEN) association of Cdc5 and its substrates that exclusively localize to the kinetochore have not been characterized. Here we report that evolutionarily conserved CEN histone H3 variant, Cse4 (CENP-A in humans), is a substrate of Cdc5, and that the cell cycle-regulated association of Cse4 with Cdc5 is required for cell growth. Cdc5 contributes to Cse4 phosphorylation in vivo and interacts with Cse4 in mitotic cells. Mass spectrometry analysis of in vitro kinase assays showed that Cdc5 phosphorylates nine serine residues clustered within the N-terminus of Cse4. Strains with cse4-9SA exhibit increased errors in chromosome segregation, reduced levels of CEN-associated Mif2 and Mcd1/Scc1 when combined with a deletion of MCM21. Moreover, the loss of Cdc5 from the CEN chromatin contributes to defects in kinetochore integrity and reduction in CEN-associated Cse4. The cell cycle-regulated association of Cdc5 with Cse4 is essential for cell viability as constitutive association of Cdc5 with Cse4 at the kinetochore leads to growth defects. In summary, our results have defined a role for Cdc5-mediated Cse4 phosphorylation in faithful chromosome segregation.

摘要

进化上保守的丝氨酸/苏氨酸激酶,CDC5(人类中的 PLK1),在有丝分裂过程中与着丝粒结合;然而,CDC5 的细胞周期依赖性着丝粒(CEN)结合及其仅定位于动粒的底物的作用尚未得到表征。在这里,我们报告说进化上保守的着丝粒组蛋白 H3 变体 CSE4(人类中的 CENP-A)是 CDC5 的底物,并且 CSE4 与 CDC5 的细胞周期调节相关联对于细胞生长是必需的。CDC5 在体内有助于 CSE4 的磷酸化,并在有丝分裂细胞中与 CSE4 相互作用。体外激酶分析的质谱分析表明,CDC5 磷酸化 CSE4 的 N 端内九个丝氨酸残基。当与 MCM21 的缺失组合时,cse4-9SA 菌株表现出染色体分离错误增加、CEN 相关的 Mif2 和 Mcd1/Scc1 水平降低。此外,CEN 染色质中 CDC5 的缺失导致动粒完整性缺陷和 CEN 相关 CSE4 减少。CDC5 与 CSE4 的细胞周期调节相关联对于细胞活力是必需的,因为 Cdc5 在动粒上与 Cse4 的组成性结合会导致生长缺陷。总之,我们的结果定义了 CDC5 介导的 CSE4 磷酸化在忠实染色体分离中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b25/6589903/cde47f52e0ed/mbc-30-1020-g001.jpg

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