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在Smurf1基因敲除细胞中,CNF1诱导的活化型RhoA的泛素化及蛋白酶体降解受到损害。

CNF1-induced ubiquitylation and proteasome destruction of activated RhoA is impaired in Smurf1-/- cells.

作者信息

Boyer Laurent, Turchi Laurent, Desnues Benoit, Doye Anne, Ponzio Gilles, Mege Jean-Louis, Yamashita Motozo, Zhang Ying E, Bertoglio Jacques, Flatau Gilles, Boquet Patrice, Lemichez Emmanuel

机构信息

Faculté de Médecine, Institut National de la Santé et de la Recherche Médicale, U627, 06107 Nice Cedex 2, France.

出版信息

Mol Biol Cell. 2006 Jun;17(6):2489-97. doi: 10.1091/mbc.e05-09-0876. Epub 2006 Mar 15.

Abstract

Ubiquitylation of RhoA has emerged as an important aspect of both the virulence of Escherichia coli producing cytotoxic necrotizing factor (CNF) 1 toxin and the establishment of the polarity of eukaryotic cells. Owing to the molecular activity of CNF1, we have investigated the relationship between permanent activation of RhoA catalyzed by CNF1 and subsequent ubiquitylation of RhoA by Smurf1. Using Smurf1-deficient cells and by RNA interference (RNAi)-mediated Smurf1 knockdown, we demonstrate that Smurf1 is a rate-limiting and specific factor of the ubiquitin-mediated proteasomal degradation of activated RhoA. We further show that the cancer cell lines HEp-2, human embryonic kidney 293 and Vero are specifically deficient in ubiquitylation of either activated Rac, Cdc42, or Rho, respectively. In contrast, CNF1 produced the cellular depletion of all three isoforms of Rho proteins in the primary human cell types we have tested. We demonstrate that ectopic expression of Smurf1 in Vero cells, deficient for RhoA ubiquitylation, restores ubiquitylation of the activated forms of RhoA. We conclude here that Smurf1 ubiquitylates activated RhoA and that, in contrast to human primary cell types, some cancer cell lines have a lower ubiquitylation capacity of specific Rho proteins. Thus, both CNF1 and transforming growth factor-beta trigger activated RhoA ubiquitylation through Smurf1 ubiquitin-ligase.

摘要

RhoA的泛素化已成为产细胞毒性坏死因子(CNF)1毒素的大肠杆菌毒力以及真核细胞极性建立的一个重要方面。由于CNF1的分子活性,我们研究了CNF1催化的RhoA永久激活与随后Smurf1介导的RhoA泛素化之间的关系。利用Smurf1缺陷细胞并通过RNA干扰(RNAi)介导的Smurf1敲低,我们证明Smurf1是泛素介导的活化RhoA蛋白酶体降解的限速和特异性因子。我们进一步表明,癌细胞系HEp-2、人胚肾293和Vero分别在活化的Rac、Cdc42或Rho的泛素化方面存在特异性缺陷。相比之下,CNF1在我们测试的原代人类细胞类型中导致了所有三种Rho蛋白异构体的细胞内耗竭。我们证明,在缺乏RhoA泛素化的Vero细胞中异位表达Smurf1可恢复活化形式的RhoA的泛素化。我们在此得出结论,Smurf1使活化的RhoA泛素化,并且与人类原代细胞类型不同,一些癌细胞系对特定Rho蛋白的泛素化能力较低。因此,CNF1和转化生长因子-β均通过Smurf1泛素连接酶触发活化的RhoA泛素化。

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