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去泛素化酶Ubp3对Pkc1介导的信号传导的下调作用。

Down-regulation of Pkc1-mediated signaling by the deubiquitinating enzyme Ubp3.

作者信息

Wang Yuqi, Zhu Ming, Ayalew Mihretu, Ruff Jack A

机构信息

Department of Biology, Saint Louis University, St. Louis, Missouri 63103, USA.

出版信息

J Biol Chem. 2008 Jan 25;283(4):1954-61. doi: 10.1074/jbc.M705682200. Epub 2007 Nov 6.

Abstract

Regulated ubiquitination and degradation of signaling proteins have emerged as key mechanisms for modulating the strength and duration of signaling pathways. The reversible nature of the ubiquitination process as well as the large number and diversity of the deubiquitinating enzymes raise the possibility that signaling pathways might be modulated by specific deubiquitinating enzyme(s). Here we provide evidence that in the yeast Saccharomyces cerevisiae, the Pkc1-mediated signaling pathway that controls the cell wall integrity is negatively regulated by the deubiquitinating enzyme Ubp3. Disruption of the UBP3 gene leads to an enhanced activation of the cell wall integrity pathway MAPK Slt2 when cells are challenged with a variety of pathway activation agents such as pheromone and Congo red. The ubp3 deletion mutants accumulate high levels of Pkc1, suggesting potential regulation of Pkc1 by Ubp3. Consistent with this, Pkc1 and Ubp3 interact in vivo, and the stability of Pkc1 is markedly increased in the ubp3 deletion mutants. Moreover, disruption of the PKC1 gene, but not the genes that encode components downstream of Pkc1, completely suppresses other phenotypes displayed by the ubp3 deletion mutants such as hyperactivation of the pheromone-responsive MAPK Fus3 (Wang, Y., and Dohlman, H. G. (2002) J. Biol. Chem. 277, 15766-15772). These findings demonstrate that Ubp3 can regulate Pkc1 by facilitating its destruction and provide the initial evidence that Pkc1 plays a positive role in modulating the parallel pheromone-signaling pathway.

摘要

信号蛋白的泛素化调控及降解已成为调节信号通路强度和持续时间的关键机制。泛素化过程的可逆性以及去泛素化酶的数量众多和种类多样,增加了信号通路可能由特定去泛素化酶进行调节的可能性。在此,我们提供证据表明,在酿酒酵母中,控制细胞壁完整性的Pkc1介导的信号通路受到去泛素化酶Ubp3的负调控。当细胞受到多种通路激活剂如信息素和刚果红的刺激时,UBP3基因的破坏会导致细胞壁完整性通路丝裂原活化蛋白激酶Slt2的激活增强。ubp3缺失突变体积累了高水平的Pkc1,表明Ubp3可能对Pkc1有潜在调控作用。与此一致的是,Pkc1和Ubp3在体内相互作用,并且在ubp3缺失突变体中Pkc1的稳定性显著增加。此外,PKC1基因的破坏而非编码Pkc1下游组分的基因的破坏,完全抑制了ubp3缺失突变体表现出的其他表型,如信息素应答丝裂原活化蛋白激酶Fus3的过度激活(Wang, Y., and Dohlman, H. G. (2002) J. Biol. Chem. 277, 15766 - 15772)。这些发现表明Ubp3可通过促进Pkc1的降解来调节Pkc1,并提供了Pkc1在调节平行信息素信号通路中起积极作用的初步证据。

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