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极光激酶B使有丝分裂着丝粒相关驱动蛋白上的多个位点磷酸化,从而在空间和时间上调节其功能。

Aurora B phosphorylates multiple sites on mitotic centromere-associated kinesin to spatially and temporally regulate its function.

作者信息

Zhang Xin, Lan Weijie, Ems-McClung Stephanie C, Stukenberg P Todd, Walczak Claire E

机构信息

Department of Biology, Indiana University, Bloomington, IN 47405, USA.

出版信息

Mol Biol Cell. 2007 Sep;18(9):3264-76. doi: 10.1091/mbc.e07-01-0086. Epub 2007 Jun 13.

Abstract

Chromosome congression and segregation require the proper attachment of microtubules to the two sister kinetochores. Disruption of either Aurora B kinase or the Kinesin-13 mitotic centromere-associated kinesin (MCAK) increases chromosome misalignment and missegregation due to improper kinetochore-microtubule attachments. MCAK localization and activity are regulated by Aurora B, but how Aurora B phosphorylation of MCAK affects spindle assembly is unclear. Here, we show that the binding of MCAK to chromosome arms is also regulated by Aurora B and that Aurora B-dependent chromosome arm and centromere localization is regulated by distinct two-site phosphoregulatory mechanisms. MCAK association with chromosome arms is promoted by phosphorylation of T95 on MCAK, whereas phosphorylation of S196 on MCAK promotes dissociation from the arms. Although targeting of MCAK to centromeres requires phosphorylation of S110 on MCAK, dephosphorylation of T95 on MCAK increases the binding of MCAK to centromeres. Our study reveals a new role for Aurora B, which is to prevent excess MCAK binding to chromatin to facilitate chromatin-nucleated spindle assembly. Our study also shows that the interplay between multiple phosphorylation sites of MCAK may be critical to temporally and spatially control MCAK function.

摘要

染色体的汇聚和分离需要微管正确附着于两个姐妹动粒。极光激酶B(Aurora B kinase)或驱动蛋白13(Kinesin-13)有丝分裂着丝粒相关驱动蛋白(MCAK)功能的破坏会导致着丝粒 - 微管附着不当,进而增加染色体排列错误和分离错误。MCAK的定位和活性受Aurora B调节,但Aurora B对MCAK的磷酸化如何影响纺锤体组装尚不清楚。在这里,我们表明MCAK与染色体臂的结合也受Aurora B调节,并且Aurora B依赖的染色体臂和着丝粒定位受不同的双位点磷酸调节机制调控。MCAK上T95位点的磷酸化促进MCAK与染色体臂的结合,而MCAK上S196位点的磷酸化则促进其与染色体臂的解离。虽然将MCAK靶向着丝粒需要MCAK上S110位点的磷酸化,但MCAK上T95位点的去磷酸化会增加MCAK与着丝粒的结合。我们的研究揭示了Aurora B的一个新作用,即防止过多的MCAK与染色质结合,以促进由染色质引发的纺锤体组装。我们的研究还表明,MCAK多个磷酸化位点之间的相互作用可能对在时间和空间上控制MCAK功能至关重要。

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