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在从增殖转变为静止状态时,酵母腺嘌呤脱氨酶依赖蛋白酶体和SCF的降解需要一种名为Saf1p的新F-box蛋白。

Proteasome- and SCF-dependent degradation of yeast adenine deaminase upon transition from proliferation to quiescence requires a new F-box protein named Saf1p.

作者信息

Escusa Stéphanie, Camblong Jurgi, Galan Jean-Marc, Pinson Benoît, Daignan-Fornier Bertrand

机构信息

Institut de Biochimie et Génétique Cellulaires, CNRS/Université Bordeaux 2 UMR 5095, 33077 Bordeaux Cedex, France.

出版信息

Mol Microbiol. 2006 May;60(4):1014-25. doi: 10.1111/j.1365-2958.2006.05153.x.

Abstract

In response to nutrient limitation, Saccharomyces cerevisiae cells enter into a non-proliferating state termed quiescence. This transition is associated with profound changes in gene expression patterns. The adenine deaminase encoding gene AAH1 is among the most precociously and tightly downregulated gene upon entry into quiescence. We show that AAH1 downregulation is not specifically due to glucose exhaustion but is a more general response to nutrient limitation. We also found that Aah1p level is tightly correlated to RAS activity indicating thus an important role for the protein kinase A pathway in this regulation process. We have isolated three deletion mutants, srb10, srb11 and saf1 (ybr280c) affecting AAH1 expression during post-diauxic growth and in early stationary phase. We show that the Srb10p cyclin-dependent kinase and its cyclin, Srb11p, regulate AAH1 expression at the transcriptional level. By contrast, Saf1p, a previously uncharacterized F-box protein, acts at a post-transcriptional level by promoting degradation of Aah1p. This post-transcriptional regulation is abolished by mutations affecting the proteasome or constant subunits of the SCF (Skp1-Cullin-F-box) complex. We propose that Saf1p targets Aah1p for proteasome-dependent degradation upon entry into quiescence. This work provides the first direct evidence for active degradation of proteins in quiescent yeast cells.

摘要

为应对营养限制,酿酒酵母细胞进入一种称为静止期的非增殖状态。这种转变与基因表达模式的深刻变化相关。进入静止期后,腺嘌呤脱氨酶编码基因AAH1是最早且最显著下调的基因之一。我们发现,AAH1的下调并非特别因葡萄糖耗尽所致,而是对营养限制的一种更普遍反应。我们还发现,Aah1p水平与RAS活性紧密相关,这表明蛋白激酶A途径在该调控过程中发挥重要作用。我们分离出了三个缺失突变体,即srb10、srb11和saf1(ybr280c),它们在二次生长后期和早期稳定期影响AAH1的表达。我们表明,Srb10p细胞周期蛋白依赖性激酶及其细胞周期蛋白Srb11p在转录水平上调节AAH1的表达。相比之下,Saf1p是一种此前未被表征的F-box蛋白,它通过促进Aah1p的降解在转录后水平发挥作用。影响蛋白酶体或SCF(Skp1-Cullin-F-box)复合体恒定亚基的突变会消除这种转录后调控。我们提出,进入静止期后,Saf1p将Aah1p靶向蛋白酶体依赖性降解。这项工作为静止酵母细胞中蛋白质的主动降解提供了首个直接证据。

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