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在酿酒酵母中,与Polo相关的激酶Cdc5被有丝分裂周期蛋白破坏机制激活并被其破坏。

The Polo-related kinase Cdc5 activates and is destroyed by the mitotic cyclin destruction machinery in S. cerevisiae.

作者信息

Charles J F, Jaspersen S L, Tinker-Kulberg R L, Hwang L, Szidon A, Morgan D O

机构信息

Department of Physiology, University of California San Francisco, California, 94143, USA.

出版信息

Curr Biol. 1998 Apr 23;8(9):497-507. doi: 10.1016/s0960-9822(98)70201-5.

Abstract

BACKGROUND

Following chromosome segregation in anaphase, ubiquitin-dependent degradation of mitotic cyclins contributes to the exit from mitosis. A key step in this process is catalyzed by a ubiquitin-protein ligase known as the anaphase-promoting complex (APC), the regulation of which is poorly understood. The Polo-related protein kinase Cdc5 in Saccharomyces cerevisiae might encode a regulator of the APC, because cdc5 mutant cells arrest with a late mitotic phenotype similar to that observed in cells with defective cyclin destruction.

RESULTS

We investigated the role of Cdc5 in the regulation of mitotic cyclin degradation. In cdc5-1 mutant cells, we observed a defect in the destruction of cyclins and a reduction in the cyclin-ubiquitin ligase activity of the APC. Overexpression of CDC5 resulted in increased APC activity and mitotic cyclin destruction in asynchronous cells or in cells arrested in metaphase. CDC5 mutation or overexpression did not affect the degradation of the APC substrate Pds 1, which is normally degraded at the metaphase-to-anaphase transition. Cyclin-specific APC activity in cells overexpressing CDC5 was reduced in the absence of the APC regulatory proteins Hct 1 and Cdc20. In G1, Cdc5 itself was degraded by an APC-dependent and Hct1-dependent mechanism.

CONCLUSIONS

We conclude that Cdc5 is a positive regulator of cyclin-specific APC activity in late mitosis. Degradation of Cdc5 in G1 might provide a feedback mechanism by which the APC destroys its activator at the onset of the next cell cycle.

摘要

背景

在后期染色体分离之后,有丝分裂周期蛋白的泛素依赖性降解有助于细胞退出有丝分裂。这一过程中的关键步骤由一种名为后期促进复合物(APC)的泛素-蛋白连接酶催化,但其调控机制尚不清楚。酿酒酵母中的Polo相关蛋白激酶Cdc5可能编码APC的一种调节因子,因为cdc5突变细胞会停滞在晚期有丝分裂表型,类似于在周期蛋白破坏缺陷的细胞中观察到的情况。

结果

我们研究了Cdc5在有丝分裂周期蛋白降解调控中的作用。在cdc5-1突变细胞中,我们观察到周期蛋白破坏存在缺陷,且APC的周期蛋白-泛素连接酶活性降低。CDC5的过表达导致异步细胞或中期停滞细胞中APC活性增加以及有丝分裂周期蛋白破坏。CDC5突变或过表达不影响APC底物Pds 1的降解,Pds 1通常在中期到后期的转变过程中被降解。在缺乏APC调节蛋白Hct 1和Cdc20的情况下,过表达CDC5的细胞中周期蛋白特异性APC活性降低。在G1期,Cdc5自身通过一种APC依赖性和Hct1依赖性机制被降解。

结论

我们得出结论,Cdc5是有丝分裂后期周期蛋白特异性APC活性的正调节因子。G1期Cdc5的降解可能提供一种反馈机制,通过该机制APC在下一个细胞周期开始时破坏其激活剂。

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