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极光B对ZEN-4/MKLP1的磷酸化作用调节胞质分裂的完成。

Phosphorylation of ZEN-4/MKLP1 by aurora B regulates completion of cytokinesis.

作者信息

Guse Annika, Mishima Masanori, Glotzer Michael

机构信息

Research Institute of Molecular Pathology, Vienna, Austria.

出版信息

Curr Biol. 2005 Apr 26;15(8):778-86. doi: 10.1016/j.cub.2005.03.041.

Abstract

The central spindle regulates the formation and positioning of the contractile ring and is essential for completion of cytokinesis [1]. Central spindle assembly begins in early anaphase with the bundling of overlapping, antiparallel, nonkinetochore microtubules [2, 3], and these bundles become compacted and mature into the midbody. Prominent components of the central spindle include aurora B kinase and centralspindlin, a complex containing a Kinesin-6 protein (ZEN-4/MKLP1) and a Rho family GAP (CYK-4/MgcRacGAP) that is essential for central spindle assembly [4]. Centralspindlin localization depends on aurora B kinase [5]. Aurora B concentrates in the midbody and persists between daughter cells. Here, we show that in C. elegans embryos and in cultured human cells, respectively, ZEN-4 and MKLP1 are phosphorylated by aurora B in vitro and in vivo on conserved C-terminal serine residues. In C. elegans embryos, a nonphosphorylatable mutant of ZEN-4 localizes properly but does not efficiently support completion of cytokinesis. In mammalian cells, an inhibitor of aurora kinase acutely attenuates phosphorylation of MKLP1. Inhibition of aurora B in late anaphase causes cytokinesis defects without disrupting the central spindle. These data indicate a conserved role for aurora-B-mediated phosphorylation of ZEN-4/MKLP1 in the completion of cytokinesis.

摘要

中央纺锤体调控收缩环的形成与定位,对胞质分裂的完成至关重要[1]。中央纺锤体组装在后期早期开始,由重叠、反向平行的非动粒微管成束启动[2,3],这些微管束会压缩并成熟为中间体。中央纺锤体的主要组成部分包括极光激酶B和中央纺锤体蛋白复合体,该复合体包含一种驱动蛋白-6蛋白(ZEN-4/MKLP1)和一种Rho家族GAP(CYK-4/MgcRacGAP),对中央纺锤体组装至关重要[4]。中央纺锤体蛋白复合体的定位依赖于极光激酶B[5]。极光激酶B集中在中间体,并在子细胞间持续存在。在此,我们分别表明,在秀丽隐杆线虫胚胎和培养的人类细胞中,ZEN-4和MKLP1在体外和体内均在保守的C末端丝氨酸残基上被极光激酶B磷酸化。在秀丽隐杆线虫胚胎中,ZEN-4的非磷酸化突变体定位正常,但不能有效支持胞质分裂的完成。在哺乳动物细胞中,极光激酶抑制剂可急性减弱MKLP1的磷酸化。在后期晚期抑制极光激酶B会导致胞质分裂缺陷,但不会破坏中央纺锤体。这些数据表明极光激酶B介导的ZEN-4/MKLP1磷酸化在胞质分裂完成过程中具有保守作用。

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