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泛素样-泛素相关蛋白Ddi1在SCFUfo1复合物周转中的独特作用。

Unique role for the UbL-UbA protein Ddi1 in turnover of SCFUfo1 complexes.

作者信息

Ivantsiv Yelena, Kaplun Ludmila, Tzirkin-Goldin Regina, Shabek Nitzan, Raveh Dina

机构信息

Department of Life Sciences, Ben Gurion University of the Negev, Beersheba 84105, Israel.

出版信息

Mol Cell Biol. 2006 Mar;26(5):1579-88. doi: 10.1128/MCB.26.5.1579-1588.2006.

Abstract

SCF complexes are E3 ubiquitin-protein ligases that mediate degradation of regulatory and signaling proteins and control G1/S cell cycle progression by degradation of G1 cyclins and the cyclin-dependent kinase inhibitor, Sic1. Interchangeable F-box proteins bind the core SCF components; each recruits a specific subset of substrates for ubiquitylation. The F-box proteins themselves are rapidly turned over by autoubiquitylation, allowing rapid recycling of SCF complexes. Here we report a role for the UbL-UbA protein Ddi1 in the turnover of the F-box protein, Ufo1. Ufo1 is unique among F-box proteins in having a domain comprising multiple ubiquitin-interacting motifs (UIMs) that mediate its turnover. Deleting the UIMs leads to stabilization of Ufo1 and to cell cycle arrest at G1/S of cells with long buds resembling skp1 mutants. Cells accumulate substrates of other F-box proteins, indicating that the SCF pathway of substrate ubiquitylation is inhibited. Ufo1 interacts with Ddi1 via its UIMs, and Deltaddi1 cells arrest when full-length UFO1 is overexpressed. These results imply a role for the UIMs in turnover of SCF(Ufo1) complexes that is dependent on Ddi1, a novel activity for an UbL-UbA protein.

摘要

SCF复合物是E3泛素蛋白连接酶,介导调节蛋白和信号蛋白的降解,并通过降解G1期细胞周期蛋白和细胞周期蛋白依赖性激酶抑制剂Sic1来控制G1/S期细胞周期进程。可互换的F-box蛋白与SCF核心组分结合;每种F-box蛋白招募特定的底物子集进行泛素化修饰。F-box蛋白自身通过自泛素化快速周转,从而使SCF复合物能够快速循环利用。在此,我们报道了UbL-UbA蛋白Ddi1在F-box蛋白Ufo1周转过程中的作用。Ufo1在F-box蛋白中是独特的,它具有一个包含多个泛素相互作用基序(UIM)的结构域,该结构域介导其周转。删除UIM会导致Ufo1稳定,并使具有长芽的细胞在G1/S期发生细胞周期阻滞,类似于skp1突变体。细胞积累其他F-box蛋白的底物,表明底物泛素化的SCF途径受到抑制。Ufo1通过其UIM与Ddi1相互作用,当全长UFO1过表达时,Deltaddi1细胞会发生阻滞。这些结果表明UIM在依赖于Ddi1的SCF(Ufo1)复合物周转中发挥作用,这是UbL-UbA蛋白的一种新活性。

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