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磷酸化调节的 Bim1/EB1 相互作用触发芽殖酵母外动粒处 Dam1c 环的组装。

Phospho-regulated Bim1/EB1 interactions trigger Dam1c ring assembly at the budding yeast outer kinetochore.

机构信息

Department of Molecular Genetics I, Center of Molecular Biotechnology, University of Duisburg-Essen, Essen, Germany.

Department of Structural Biochemistry, Max Planck Institute of Molecular Physiology, Dortmund, Germany.

出版信息

EMBO J. 2021 Sep 15;40(18):e108004. doi: 10.15252/embj.2021108004. Epub 2021 Jul 27.

Abstract

Kinetochores form the link between chromosomes and microtubules of the mitotic spindle. The heterodecameric Dam1 complex (Dam1c) is a major component of the Saccharomyces cerevisiae outer kinetochore, assembling into 3 MDa-sized microtubule-embracing rings, but how ring assembly is specifically initiated in vivo remains to be understood. Here, we describe a molecular pathway that provides local control of ring assembly during the establishment of sister kinetochore bi-orientation. We show that Dam1c and the general microtubule plus end-associated protein (+TIP) Bim1/EB1 form a stable complex depending on a conserved motif in the Duo1 subunit of Dam1c. EM analyses reveal that Bim1 crosslinks protrusion domains of adjacent Dam1c heterodecamers and promotes the formation of oligomers with defined curvature. Disruption of the Dam1c-Bim1 interaction impairs kinetochore localization of Dam1c in metaphase and delays mitosis. Phosphorylation promotes Dam1c-Bim1 binding by relieving an intramolecular inhibition of the Dam1 C-terminus. In addition, Bim1 recruits Bik1/CLIP-170 to Dam1c and induces formation of full rings even in the absence of microtubules. Our data help to explain how new kinetochore end-on attachments are formed during the process of attachment error correction.

摘要

动粒将染色体与有丝分裂纺锤体的微管连接起来。异源十聚体 Dam1 复合物(Dam1c)是酿酒酵母外动粒的主要组成部分,组装成 3MDa 大小的微管环抱环,但体内如何特异性地启动环组装仍有待理解。在这里,我们描述了一种分子途径,为姐妹动粒双定向建立过程中提供了环组装的局部控制。我们表明,Dam1c 和普遍的微管正端相关蛋白(+TIP)Bim1/EB1 形成一个稳定的复合物,这取决于 Dam1c 的 Duo1 亚基中的保守模体。EM 分析显示 Bim1 交联相邻 Dam1c 异十聚体的突出结构域,并促进具有确定曲率的寡聚体的形成。破坏 Dam1c-Bim1 相互作用会损害中期动粒中 Dam1c 的定位,并延迟有丝分裂。磷酸化通过释放 Dam1C 末端的分子内抑制作用促进 Dam1c-Bim1 结合。此外,Bim1 将 Bik1/CLIP-170 招募到 Dam1c 上,并诱导即使在没有微管的情况下也能形成完整的环。我们的数据有助于解释在附着错误修正过程中如何形成新的动粒末端附着。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3102/8441410/45b8f2ca071d/EMBJ-40-e108004-g005.jpg

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