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与F-box蛋白Cdc4p和Met30p氨基末端相对应的多肽过量产生会抑制其SCF复合物的泛素连接酶活性。

Overproduction of polypeptides corresponding to the amino terminus of the F-box proteins Cdc4p and Met30p inhibits ubiquitin ligase activities of their SCF complexes.

作者信息

Dixon Cheryl, Brunson Lee Ellen, Roy Mary Margaret, Smothers Dechelle, Sehorn Michael G, Mathias Neal

机构信息

Department of Biochemistry and Molecular Biology, Louisiana State University Health Science Center, Shreveport, Louisiana 71130-3932, USA.

出版信息

Eukaryot Cell. 2003 Feb;2(1):123-33. doi: 10.1128/EC.2.1.123-133.2003.

Abstract

Ubiquitin ligases direct the transfer of ubiquitin onto substrate proteins and thus target the substrate for proteasome-dependent degradation. SCF complexes are a family of ubiquitin ligases composed of a common core of components and a variable component called an F-box protein that defines substrate specificity. Distinct SCF complexes, defined by a particular F-box protein, target different substrate proteins for degradation. Although a few have been identified to be involved in important biological pathways, such as the cell division cycle and coordinating cellular responses to changes in environmental conditions, the role of the overwhelming majority of F-box proteins is not clear. Creating inhibitors that will block the in vivo activities of specific SCF ubiquitin ligases may provide identification of substrates of these uncharacterized F-box proteins. Using Saccharomyces cerevisiae as a model system, we demonstrate that overproduction of polypeptides corresponding to the amino terminus of the F-box proteins Cdc4p and Met30p results in specific inhibition of their SCF complexes. Analyses of mutant amino-terminal alleles demonstrate that the interaction of these polypeptides with their full-length counterparts is an important step in the inhibitory process. These results suggest a common means to inhibit specific SCF complexes in vivo.

摘要

泛素连接酶将泛素转移到底物蛋白上,从而使底物被蛋白酶体依赖性降解。SCF复合物是一类泛素连接酶,由共同的核心成分和一个名为F-box蛋白的可变成分组成,该可变成分决定底物特异性。由特定F-box蛋白定义的不同SCF复合物靶向不同的底物蛋白进行降解。尽管已经确定少数SCF复合物参与重要的生物学途径,如细胞分裂周期以及协调细胞对环境条件变化的反应,但绝大多数F-box蛋白的作用尚不清楚。创建能够阻断特定SCF泛素连接酶体内活性的抑制剂,可能有助于鉴定这些未表征F-box蛋白的底物。以酿酒酵母作为模型系统,我们证明过量表达与F-box蛋白Cdc4p和Met30p氨基末端对应的多肽会导致其SCF复合物的特异性抑制。对突变氨基末端等位基因的分析表明,这些多肽与其全长对应物的相互作用是抑制过程中的重要一步。这些结果提示了一种在体内抑制特定SCF复合物的通用方法。

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