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裂殖酵母Clp1p磷酸酶调控G2/M期转换以及胞质分裂与细胞周期进程的协调。

Fission yeast Clp1p phosphatase regulates G2/M transition and coordination of cytokinesis with cell cycle progression.

作者信息

Trautmann S, Wolfe B A, Jorgensen P, Tyers M, Gould K L, McCollum D

机构信息

Department of Molecular Genetics and Microbiology, University of Massachusetts Medical School, Worcester, MA 01605, USA.

出版信息

Curr Biol. 2001 Jun 26;11(12):931-40. doi: 10.1016/s0960-9822(01)00268-8.

Abstract

BACKGROUND

In Saccharomyces cerevisiae the mitotic-exit network (MEN) functions in anaphase to promote the release of the Cdc14p phosphatase from the nucleolus. This release causes mitotic exit via inactivation of the cyclin-dependent kinase (Cdk). Cdc14p-like proteins are highly conserved; however, it is unclear if these proteins regulate mitotic exit as in S. cerevisiae. In Schizosaccharomyces pombe a signaling pathway homologous to the MEN and termed the septation initiation network (SIN) is required not for mitotic exit, but for initiation of cytokinesis and for a cytokinesis checkpoint that inhibits further cell cycle progression until cytokinesis is complete.

RESULTS

We have identified the S. pombe Cdc14p homolog, Clp1p, and show that it is not required for mitotic exit but rather functions together with the SIN in coordinating cytokinesis with the nuclear-division cycle. As cells enter mitosis, Clp1p relocalizes from the nucleolus to the spindle and site of cell division. Clp1p exit from the nucleolus does not depend on the SIN, but the SIN is required for keeping Clp1p out of the nucleolus until completion of cytokinesis. Clp1p, in turn, may promote the activation of the SIN by antagonizing Cdk activity until cytokinesis is complete and thus ensuring that cytokinesis is completed prior to the initiation of the next cell cycle. In addition to its roles in anaphase, Clp1p regulates the G2/M transition since cells deleted for clp1 enter mitosis precociously and cells overexpressing Clp1p delay mitotic entry. Unlike Cdc14p, Clp1p appears to antagonize Cdk activity by preventing dephosphorylation of Cdc2p on tyrosine.

CONCLUSIONS

S. pombe Clp1p affects cell cycle progression in a markedly different manner than its S. cerevisiae homolog, Cdc14p. This finding raises the possibility that related phosphatases in animal cells will prove to have important roles in coordinating the onset of cytokinesis with the events of mitosis.

摘要

背景

在酿酒酵母中,有丝分裂退出网络(MEN)在后期发挥作用,促进Cdc14p磷酸酶从核仁中释放出来。这种释放通过使细胞周期蛋白依赖性激酶(Cdk)失活导致有丝分裂退出。Cdc14p样蛋白高度保守;然而,尚不清楚这些蛋白是否像在酿酒酵母中那样调节有丝分裂退出。在粟酒裂殖酵母中,一条与MEN同源且被称为隔膜起始网络(SIN)的信号通路并非有丝分裂退出所必需,而是胞质分裂起始以及一个胞质分裂检查点所必需,该检查点会抑制细胞周期进一步推进,直到胞质分裂完成。

结果

我们鉴定出了粟酒裂殖酵母的Cdc14p同源物Clp1p,并表明它不是有丝分裂退出所必需的,而是与SIN一起在协调胞质分裂与核分裂周期中发挥作用。当细胞进入有丝分裂时,Clp1p从核仁重新定位到纺锤体和细胞分裂位点。Clp1p从核仁中退出不依赖于SIN,但SIN是使Clp1p在胞质分裂完成之前不进入核仁所必需的。反过来,Clp1p可能通过拮抗Cdk活性来促进SIN的激活,直到胞质分裂完成,从而确保在下一个细胞周期开始之前胞质分裂已完成。除了在后期的作用外,Clp1p还调节G2/M期转换,因为缺失clp1的细胞会过早进入有丝分裂,而过表达Clp1p的细胞会延迟有丝分裂进入。与Cdc14p不同,Clp1p似乎通过阻止Cdc2p酪氨酸去磷酸化来拮抗Cdk活性。

结论

粟酒裂殖酵母Clp1p影响细胞周期进程的方式与其酿酒酵母同源物Cdc14p明显不同。这一发现增加了动物细胞中相关磷酸酶在协调胞质分裂起始与有丝分裂事件方面具有重要作用的可能性。

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