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由 Dam1 和 Ndc80 复合物形成动粒-微管界面的分子要求。

Molecular requirements for the formation of a kinetochore-microtubule interface by Dam1 and Ndc80 complexes.

机构信息

Research Institute of Molecular Pathology, 1030 Vienna, Austria.

出版信息

J Cell Biol. 2013 Jan 7;200(1):21-30. doi: 10.1083/jcb.201210091. Epub 2012 Dec 31.

Abstract

Kinetochores are large protein complexes that link sister chromatids to the spindle and transduce microtubule dynamics into chromosome movement. In budding yeast, the kinetochore-microtubule interface is formed by the plus end-associated Dam1 complex and the kinetochore-resident Ndc80 complex, but how they work in combination and whether a physical association between them is critical for chromosome segregation is poorly understood. Here, we define structural elements required for the Ndc80-Dam1 interaction and probe their function in vivo. A novel ndc80 allele, selectively impaired in Dam1 binding, displayed growth and chromosome segregation defects. Its combination with an N-terminal truncation resulted in lethality, demonstrating essential but partially redundant roles for the Ndc80 N-tail and Ndc80-Dam1 interface. In contrast, mutations in the calponin homology domain of Ndc80 abrogated kinetochore function and were not compensated by the presence of Dam1. Our experiments shed light on how microtubule couplers cooperate and impose important constraints on structural models for outer kinetochore assembly.

摘要

着丝粒是将姐妹染色单体连接到纺锤体并将微管动力学转化为染色体运动的大型蛋白质复合物。在芽殖酵母中,动粒-微管界面由与正极相关的 Dam1 复合物和着丝粒驻留的 Ndc80 复合物形成,但它们如何协同工作以及它们之间是否存在物理关联对于染色体分离的重要性还知之甚少。在这里,我们定义了 Ndc80-Dam1 相互作用所需的结构元件,并在体内探测它们的功能。一种新的 ndc80 等位基因,选择性地损害了与 Dam1 的结合,表现出生长和染色体分离缺陷。它与 N 端截断的组合导致致死性,表明 Ndc80 N 尾和 Ndc80-Dam1 界面的作用必不可少但部分冗余。相比之下,Ndc80 的钙调蛋白同源结构域中的突变破坏了动粒功能,并且不会因 Dam1 的存在而得到补偿。我们的实验阐明了微管偶联物如何协同作用,并对外部动粒组装的结构模型施加了重要限制。

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