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Incenp与一种类极光激酶形成一种复合物,该复合物对于染色体分离和胞质分裂的有效完成至关重要。

Incenp and an aurora-like kinase form a complex essential for chromosome segregation and efficient completion of cytokinesis.

作者信息

Kaitna S, Mendoza M, Jantsch-Plunger V, Glotzer M

机构信息

Research Institute of Molecular Pathology, Dr. Bohr-Gasse 7, A-1030 Vienna, Austria.

出版信息

Curr Biol. 2000 Oct 5;10(19):1172-81. doi: 10.1016/s0960-9822(00)00721-1.

DOI:10.1016/s0960-9822(00)00721-1
PMID:11050385
Abstract

BACKGROUND

In animal cells, cytokinesis begins shortly after the sister chromatids move to the spindle poles. The inner centromere protein (Incenp)has been implicated in both chromosome segregation and cytokinesis, but it is not known exactly how it mediates these two distinct processes.

RESULTS

We identified two Caenorhabditis elegans proteins, ICP-1 and ICP-2, with significant homology in their carboxyl termini to the corresponding region of vertebrate Incenp. Embryos depleted of ICP-1 by RNA-mediated interference had defects in both chromosome segregation and cytokinesis. Depletion of the Aurora-like kinase AIR-2 resulted in a similar phenotype. The carboxy-terminal region of Incenp is also homologous to that in Sli15p, a budding yeast protein that functions with the yeast Aurora kinase Ipl1p. ICP-1 bound C. elegans AIR-2 in vitro, and the corresponding mammalian orthologs Incenp and AIRK2 could be co-immunoprecipitated from cell extracts. A significant fraction of embryos depleted of ICP-1 and AIR-2 completed one cell division over the course of several cell cycles. ICP-1 promoted the stable localization of ZEN-4 (also known as CeMKLP1), a kinesin-like protein required for central spindle assembly.

CONCLUSIONS

ICP-1 and AIR-2 are part of a complex that is essential for chromosome segregation and for efficient completion of cytokinesis. We propose that this complex acts by promoting dissolution of sister chromatid cohesion and the assembly of the central spindle.

摘要

背景

在动物细胞中,胞质分裂在姐妹染色单体移向纺锤体极后不久开始。着丝粒内部蛋白(Incenp)与染色体分离和胞质分裂均有关联,但尚不清楚它究竟如何介导这两个不同的过程。

结果

我们鉴定出两种秀丽隐杆线虫蛋白,即ICP-1和ICP-2,它们的羧基末端与脊椎动物Incenp的相应区域具有显著的同源性。通过RNA介导的干扰使ICP-1缺失的胚胎在染色体分离和胞质分裂方面均存在缺陷。缺失类极光激酶AIR-2会导致类似的表型。Incenp的羧基末端区域也与酵母出芽蛋白Sli15p中的相应区域同源,Sli15p与酵母极光激酶Ipl1p共同发挥作用。ICP-1在体外与秀丽隐杆线虫AIR-2结合,并且相应的哺乳动物直系同源物Incenp和AIRK2可以从细胞提取物中进行共免疫沉淀。在几个细胞周期中,很大一部分缺失ICP-1和AIR-2的胚胎完成了一次细胞分裂。ICP-1促进了ZEN-4(也称为CeMKLP1)的稳定定位,ZEN-4是中央纺锤体组装所需的一种驱动蛋白样蛋白。

结论

ICP-1和AIR-2是一个复合体的组成部分,该复合体对于染色体分离和胞质分裂的高效完成至关重要。我们提出,这个复合体通过促进姐妹染色单体黏连的溶解和中央纺锤体的组装来发挥作用。

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