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首页> 外文期刊>Journal of Cell Science >Temporal changes in Hec1 phosphorylation control kinetochore-microtubule attachment stability during mitosis.
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Temporal changes in Hec1 phosphorylation control kinetochore-microtubule attachment stability during mitosis.

机译:Hec1磷酸化的时间变化控制有丝分裂期间动粒-微管附着的稳定性。

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摘要

Precise control of the attachment strength between kinetochores and spindle microtubules is essential to preserve genomic stability. Aurora B kinase has been implicated in regulating the stability of kinetochore-microtubule attachments but its relevant kinetochore targets in cells remain unclear. Here, we identify multiple serine residues within the N-terminus of the kinetochore protein Hec1 that are phosphorylated in an Aurora-B-kinase-dependent manner during mitosis. On all identified target sites, Hec1 phosphorylation at kinetochores is high in early mitosis and decreases significantly as chromosomes bi-orient. Furthermore, once dephosphorylated, Hec1 is not highly rephosphorylated in response to loss of kinetochore-microtubule attachment or tension. We find that a subpopulation of Aurora B kinase remains localized at the outer kinetochore even upon Hec1 dephosphorylation, suggesting that Hec1 phosphorylation by Aurora B might not be regulated wholly by spatial positioning of the kinase. Our results define a role for Hec1 phosphorylation in kinetochore-microtubule destabilization and error correction in early mitosis and for Hec1 dephosphorylation in maintaining stable attachments in late mitosis.
机译:精确控制动植物和纺锤体微管之间的附着强度对于保持基因组稳定性至关重要。 Aurora B激酶已参与调节线粒体-微管附件的稳定性,但尚不清楚其在细胞中的相关线粒体靶标。在这里,我们确定有丝分裂蛋白Hec1的N末端内的多个丝氨酸残基在有丝分裂期间以Aurora-B激酶依赖性方式被磷酸化。在所有确定的靶位点上,早期有丝分裂中,动植物的Hec1磷酸化程度很高,并且随着染色体双向迁移而显着降低。此外,一旦被去磷酸化,Hec1就不会因反线粒体-微管附着或张力的丧失而被高度重新磷酸化。我们发现,即使在Hec1脱磷酸化后,Aurora B激酶的亚群仍位于外部动粒,这表明Aurora B的Hec1磷酸化可能不会完全受激酶的空间定位所调节。我们的结果定义了Hec1磷酸化在早期有丝分裂的动粒微管失稳和错误纠正中的作用,以及Hec1磷酸化在后期有丝分裂中维持稳定附着的作用。

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