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一种优化的双杂交系统表明,Swi5的SCF(Cdc4)依赖性降解有助于S期进入的调控机制。

A refined two-hybrid system reveals that SCF(Cdc4)-dependent degradation of Swi5 contributes to the regulatory mechanism of S-phase entry.

作者信息

Kishi Tsutomu, Ikeda Akemi, Koyama Noriko, Fukada Junji, Nagao Rina

机构信息

Kishi Initiative Research Unit, RIKEN, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.

出版信息

Proc Natl Acad Sci U S A. 2008 Sep 23;105(38):14497-502. doi: 10.1073/pnas.0806253105. Epub 2008 Sep 11.

Abstract

Ubiquitin-dependent degradation is implicated in various cellular regulatory mechanisms. The SCF(Cdc4) (Skp1, Cullin/Cdc53, and the F-box protein Cdc4) complex is an ubiquitin ligase complex that acts as a regulator of cell cycle, signal transduction, and transcription. These regulatory mechanisms are not well defined because of the difficulty in identifying the interaction between ubiquitin ligases and their substrates. To identify substrates of the yeast SCF(Cdc4) ubiquitin ligase complex, we refined the yeast two-hybrid system to allow screening Cdc4-substrate interactions under conditions of substrate stabilization, and identified Swi5 as a substrate of the SCF(Cdc4) complex. Swi5 is the transcriptional activator of Sic1, the inhibitor of S phase cyclin-dependent kinases (CDKs). We showed that Swi5 is indeed ubiquitinated and degraded through the SCF(Cdc4) complex. Furthermore, the SCF(Cdc4)-dependent degradation of Swi5 was required to terminate SIC1 transcription at early G(1) phase, which ensured efficient entry into S phase: Hyperaccumulation of Sic1 was noted in cells expressing stabilized Swi5, and expression of stabilized Swi5 delayed S phase entry, which was dominantly suppressed by SIC1 deletion. These findings indicate that the SCF(Cdc4) complex regulates S phase entry not only through degradation of Sic1, but also through degradation of Swi5.

摘要

泛素依赖性降解参与多种细胞调节机制。SCF(Cdc4)(Skp1、Cullin/Cdc53和F-box蛋白Cdc4)复合物是一种泛素连接酶复合物,作为细胞周期、信号转导和转录的调节因子。由于难以确定泛素连接酶与其底物之间的相互作用,这些调节机制尚未得到充分阐明。为了鉴定酵母SCF(Cdc4)泛素连接酶复合物的底物,我们改进了酵母双杂交系统,以便在底物稳定的条件下筛选Cdc4-底物相互作用,并鉴定出Swi5是SCF(Cdc4)复合物的底物。Swi5是Sic1的转录激活因子,Sic1是S期细胞周期蛋白依赖性激酶(CDK)的抑制剂。我们表明Swi5确实通过SCF(Cdc4)复合物被泛素化并降解。此外,Swi5的SCF(Cdc4)依赖性降解是在G1早期终止SIC1转录所必需的,这确保了高效进入S期:在表达稳定化Swi5的细胞中观察到Sic1的过度积累,并且稳定化Swi5的表达延迟了S期进入,这被SIC1缺失显著抑制。这些发现表明,SCF(Cdc4)复合物不仅通过降解Sic1,还通过降解Swi5来调节S期进入。

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