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首页> 外文期刊>Journal of cell biology >The Dam1 complex confers microtubule plus end–tracking activity to the Ndc80 kinetochore complex
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The Dam1 complex confers microtubule plus end–tracking activity to the Ndc80 kinetochore complex

机译:Dam1复合物赋予Ndc80线粒体复合物微管和末端追踪活性

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摘要

Kinetochores must remain associated with microtubule ends, as they undergo rapid transitions between growth and shrinkage. The molecular basis for this essential activity that ensures correct chromosome segregation is unclear. In this study, we have used reconstitution of dynamic microtubules and total internal reflection fluorescence microscopy to define the functional relationship between two important budding yeast kinetochore complexes. We find that the Dam1 complex is an autonomous plus end–tracking complex. The Ndc80 complex, despite being structurally related to the general tip tracker EB1, fails to recognize growing ends efficiently. Dam1 oligomers are necessary and sufficient to recruit Ndc80 to dynamic microtubule ends, where both complexes remain continuously associated. The interaction occurs specifically in the presence of microtubules and is subject to regulation by Ipl1 phosphorylation. These findings can explain how the force harvested by Dam1 is transmitted to the rest of the kinetochore via the Ndc80 complex.
机译:动植物必须保持与微管末端的联系,因为它们在生长和收缩之间经历了快速过渡。确保正确染色体分离的这一基本活性的分子基础尚不清楚。在这项研究中,我们已经使用动态微管的重建和全内反射荧光显微镜术来定义两个重要的出芽酵母动粒复合物之间的功能关系。我们发现,Dam1复合体是一个自治的加上末端跟踪复合体。 Ndc80复合体尽管在结构上与通用的笔尖跟踪器EB1有关,但却无法有效地识别出生长的末端。 Dam1低聚物是必需的,并且足以将Ndc80募集到动态微管末端,其中两个复合物保持连续缔合。相互作用特别是在微管存在的情况下发生,并受Ipl1磷酸化调节。这些发现可以解释由Dam1收集的力如何通过Ndc80复合体传递到动粒体的其余部分。

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