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纺锤体完整性由Ndc80和Dam1动粒复合体之间的磷酸化依赖性相互作用调节。

Spindle integrity is regulated by a phospho-dependent interaction between the Ndc80 and Dam1 kinetochore complexes.

作者信息

Nelson Christian R, Mallett Darren R, Biggins Sue

机构信息

Howard Hughes Medical Institute, Division of Basic Sciences, Fred Hutchinson Cancer Center, Seattle, Washington, United States of America.

Molecular and Cellular Biology Program, University of Washington, Seattle, Washington, United States of America.

出版信息

PLoS Genet. 2025 Apr 4;21(4):e1011645. doi: 10.1371/journal.pgen.1011645. eCollection 2025 Apr.

Abstract

Faithful chromosome segregation depends upon kinetochores, large protein complexes that anchor chromosomes to dynamic microtubules, allowing for their movement at anaphase. Critical microtubule-coupling components of the budding yeast kinetochore, the Dam1 (Dam1c) and Ndc80 (Ndc80c) complexes, work cooperatively to ensure that kinetochores track with the plus-ends of microtubules. Additionally, the Dam1 complex plays a distinct role in ensuring the integrity of the mitotic spindle. However, the events required to orchestrate these diverse functions of Dam1c remain unclear. To identify regulatory events on kinetochores, we performed phosphoproteomics on purified kinetochore proteins and identified many previously unknown phosphorylation events. We demonstrate that Ndc80 is phosphorylated at Thr-248 and Thr-252 to promote the interaction between Ndc80 and the Dam1c. The phosphorylation of T248 is cell cycle regulated and depends on Mps1. Ndc80 phosphorylation at T248 and T252 does not appear to regulate kinetochore function and instead contributes to Dam1c localization to the anaphase spindle. A ndc80 phospho-deficient mutant exhibited a genetic interaction and altered spindle morphology when combined with dam1 mutant alleles. Taken together, we propose that Mps1-dependent phosphorylation of Ndc80 at T248 and T252 is removed at anaphase to allow Dam1c to help organize and stabilize the spindle.

摘要

准确的染色体分离依赖于动粒,动粒是一种大型蛋白质复合体,可将染色体锚定到动态微管上,使其在后期移动。芽殖酵母动粒的关键微管偶联成分,即Dam1(Dam1c)和Ndc80(Ndc80c)复合体,协同工作以确保动粒跟踪微管的正端。此外,Dam1复合体在确保有丝分裂纺锤体的完整性方面发挥着独特作用。然而,协调Dam1c这些不同功能所需的事件仍不清楚。为了确定动粒上的调控事件,我们对纯化的动粒蛋白进行了磷酸化蛋白质组学分析,并鉴定出许多以前未知的磷酸化事件。我们证明Ndc80在苏氨酸248和苏氨酸252处被磷酸化,以促进Ndc80与Dam1c之间的相互作用。T248的磷酸化受细胞周期调控,并且依赖于Mps1。Ndc80在T248和T252处的磷酸化似乎并不调节动粒功能,而是有助于Dam1c定位于后期纺锤体。一个Ndc80磷酸化缺陷突变体与dam1突变等位基因结合时表现出遗传相互作用并改变了纺锤体形态。综上所述,我们提出,Ndc80在T248和T252处的Mps1依赖性磷酸化在后期被去除,以使Dam1c有助于组织和稳定纺锤体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb4d/12007717/82f3e71b5926/pgen.1011645.g001.jpg

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