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TIP60 对 Bub1 的乙酰化调控着着丝粒区 H2AT120 的磷酸化,以保证染色体的正确分离。

TIP60 acetylation of Bub1 regulates centromeric H2AT120 phosphorylation for faithful chromosome segregation.

机构信息

The Academy for Cell and Life Health, Faculty of Life Science and Technology, Kunming University of Science and Technology, Kunming, 650500, China.

The Key Laboratory of Cell Proliferation and Differentiation of the Ministry of Education, College of Life Sciences, Peking University, Beijing, 100871, China.

出版信息

Sci China Life Sci. 2024 Sep;67(9):1957-1969. doi: 10.1007/s11427-023-2604-8. Epub 2024 May 17.

Abstract

Proper function of the centromeres ensures correct attachment of kinetochores to spindle microtubules and faithful chromosome segregation in mitosis. Defects in the integrity and function of centromeres can result in chromosome missegregation and genomic instability. Bub1 is essential for the mitotic centromere dynamics, yet the underlying molecular mechanisms remain largely unclear. Here, we demonstrate that TIP60 acetylates Bub1 at K424 and K431 on kinetochores in early mitosis. This acetylation increases the kinase activity of Bub1 to phosphorylate centromeric histone H2A at T120 (H2ApT120), which recruits Aurora B and Shugoshin 1 (Sgo1) to regulate centromere integrity, protect centromeric cohesion, and ensure the subsequent faithful chromosome segregation. Expression of the non-acetylated Bub1 mutant reduces its kinase activity, decreases the level of H2ApT120, and disrupts the recruitment of centromere proteins and chromosome congression, leading to genomic instability of daughter cells. When cells exit mitosis, HDAC1-regulated deacetylation of Bub1 decreases H2ApT120 levels and thereby promotes the departure of centromeric CPC and Sgo1, ensuring timely centromeres disassembly. Collectively, our results reveal a molecular mechanism by which the acetylation and deacetylation cycle of Bub1 modulates the phosphorylation of H2A at T120 for recruitment of Aurora B and Sgo1 to the centromeres, ensuring faithful chromosome segregation during mitosis.

摘要

着丝粒的正常功能确保了动粒与纺锤体微管的正确连接,并在有丝分裂中实现了染色体的正确分离。着丝粒完整性和功能的缺陷可导致染色体错误分离和基因组不稳定。Bub1 对于有丝分裂着丝粒动力学是必需的,但潜在的分子机制在很大程度上仍不清楚。在这里,我们证明 TIP60 在有丝分裂早期将 Bub1 乙酰化在动粒上的 K424 和 K431 位。这种乙酰化增加了 Bub1 的激酶活性,使组蛋白 H2A 的 T120 位磷酸化(H2ApT120),从而招募 Aurora B 和 Shugoshin 1(Sgo1)来调节着丝粒的完整性,保护着丝粒的黏合,并确保随后的染色体的正确分离。表达非乙酰化的 Bub1 突变体降低了其激酶活性,降低了 H2ApT120 的水平,并破坏了着丝粒蛋白的募集和染色体的汇聚,导致子细胞的基因组不稳定。当细胞退出有丝分裂时,HDAC1 调节的 Bub1 去乙酰化降低了 H2ApT120 的水平,从而促进了着丝粒 CPC 和 Sgo1 的离开,确保了着丝粒的及时解聚。总之,我们的研究结果揭示了一个分子机制,即 Bub1 的乙酰化和去乙酰化循环调节了 H2A 的 T120 位的磷酸化,以招募 Aurora B 和 Sgo1 到着丝粒,从而确保了有丝分裂过程中染色体的正确分离。

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