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Aah1p通过Skp1-Cullin-F-box依赖途径降解需要其与F-box蛋白Saf1p相互作用。

Skp1-Cullin-F-box-dependent degradation of Aah1p requires its interaction with the F-box protein Saf1p.

作者信息

Escusa Stéphanie, Laporte Damien, Massoni Aurélie, Boucherie Hélian, Dautant Alain, Daignan-Fornier Bertrand

机构信息

Université Bordeaux 2, CNRS Institut de Biochimie et Génétique Cellulaires, CNRS UMR 5095, 1 Rue Camille Saint-Saëns, 33077 Bordeaux Cedex, France.

出版信息

J Biol Chem. 2007 Jul 13;282(28):20097-103. doi: 10.1074/jbc.M702425200. Epub 2007 May 21.

Abstract

When yeast cells enter into quiescence in response to nutrient limitation, the adenine deaminase Aah1p is specifically degraded via a process requiring the F-box protein Saf1p and components of the Skp1-Cullin-F-box complex. In this paper, we show that Saf1p interacts with both Aah1p and Skp1p. Interaction with Skp1p, but not with Aah1p, requires the F-box domain of Saf1p. Based on deletion and point mutations, we further demonstrate that the F-box domain of Saf1p is critical for degradation of Aah1p. We also establish that overexpression of Saf1p in proliferating cells is sufficient to trigger the degradation of Aah1p. Using this property and a two-dimensional protein gel approach, we found that Saf1p has a small number of direct targets. Finally, we isolated and characterized several point mutations in Aah1p, which increase its stability during quiescence. The majority of the mutated residues are located in two distinct exposed regions in the Aah1p three-dimensional model structure. Two hybrid experiments strongly suggest that these domains are directly involved in interaction with Saf1p. Importantly, we obtained a mutation in Aah1p that does not affect the protein interaction with Saf1p but abolishes Aah1p degradation. Because this mutated residue is an exposed lysine in the Aah1p three-dimensional model, we propose that it is likely to be a major ubiquitylation site. All together, our data strongly argue for Saf1p being a bona fide Skp1-Cullin-F-box subunit.

摘要

当酵母细胞因营养限制进入静止期时,腺嘌呤脱氨酶Aah1p会通过一个需要F-box蛋白Saf1p和Skp1-Cullin-F-box复合物组分的过程被特异性降解。在本文中,我们表明Saf1p与Aah1p和Skp1p都相互作用。与Skp1p而非Aah1p的相互作用需要Saf1p的F-box结构域。基于缺失和点突变,我们进一步证明Saf1p的F-box结构域对Aah1p的降解至关重要。我们还证实,在增殖细胞中过表达Saf1p足以触发Aah1p的降解。利用这一特性和二维蛋白质凝胶方法,我们发现Saf1p有少量直接靶点。最后,我们分离并鉴定了Aah1p中的几个点突变,这些突变增加了其在静止期的稳定性。大多数突变残基位于Aah1p三维模型结构中两个不同的暴露区域。双杂交实验强烈表明,这些结构域直接参与与Saf1p的相互作用。重要的是,我们在Aah1p中获得了一个不影响蛋白质与Saf1p相互作用但消除Aah1p降解的突变。由于这个突变残基是Aah1p三维模型中的一个暴露赖氨酸,我们提出它可能是一个主要的泛素化位点。总之,我们的数据有力地支持Saf1p是一个真正的Skp1-Cullin-F-box亚基。

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