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Ska3通过直接与微管及Ska1微管结合结构域相互作用来确保有丝分裂的及时进行。

Ska3 Ensures Timely Mitotic Progression by Interacting Directly With Microtubules and Ska1 Microtubule Binding Domain.

作者信息

Abad Maria Alba, Zou Juan, Medina-Pritchard Bethan, Nigg Erich A, Rappsilber Juri, Santamaria Anna, Jeyaprakash A Arockia

机构信息

Wellcome Trust Centre for Cell Biology, University of Edinburgh, Michael Swann Building, Max Born Crescent, Edinburgh, EH9 3BF UK.

Biozentrum, University of Basel, Klingelbergstrasse 50/70, CH-4056 Basel, Switzerland.

出版信息

Sci Rep. 2016 Sep 26;6:34042. doi: 10.1038/srep34042.

Abstract

The establishment of physical attachment between the kinetochore and dynamic spindle microtubules, which undergo cycles of polymerization and depolymerization generating straight and curved microtubule structures, is essential for accurate chromosome segregation. The Ndc80 and Ska complexes are the major microtubule-binding factors of the kinetochore responsible for maintaining chromosome-microtubule coupling during chromosome segregation. We previously showed that the Ska1 subunit of the Ska complex binds dynamic microtubules using multiple contact sites in a mode that allows conformation-independent binding. Here, we show that the Ska3 subunit is required to modulate the microtubule binding capability of the Ska complex (i) by directly interacting with tubulin monomers and (ii) indirectly by interacting with tubulin contacting regions of Ska1 suggesting an allosteric regulation. Perturbing either the Ska3-microtubule interaction or the Ska3-Ska1 interactions negatively influences microtubule binding by the Ska complex in vitro and affects the timely onset of anaphase in cells. Thus, Ska3 employs additional modulatory elements within the Ska complex to ensure robust kinetochore-microtubule attachments and timely progression of mitosis.

摘要

动粒与动态纺锤体微管之间建立物理连接对于准确的染色体分离至关重要,纺锤体微管会经历聚合和解聚循环,产生直的和弯曲的微管结构。Ndc80和Ska复合体是动粒的主要微管结合因子,负责在染色体分离过程中维持染色体与微管的耦合。我们之前表明,Ska复合体的Ska1亚基利用多个接触位点以一种允许不依赖构象结合的模式结合动态微管。在这里,我们表明Ska3亚基是调节Ska复合体微管结合能力所必需的,(i)通过直接与微管蛋白单体相互作用,以及(ii)通过与Ska1的微管蛋白接触区域相互作用间接调节,提示存在变构调节。破坏Ska3与微管的相互作用或Ska3与Ska1的相互作用会在体外对Ska复合体的微管结合产生负面影响,并影响细胞中后期的及时开始。因此,Ska3在Ska复合体内利用额外的调节元件来确保强大的动粒与微管连接以及有丝分裂的及时进行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c259/5036024/0568b3c72c7a/srep34042-f1.jpg

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