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The CSN3 subunit of the COP9 signalosome interacts with the HD region of Sos1 regulating stability of this GEF protein

机译:COP9信号小体的CSN3亚基与Sos1的HD区相互作用,调节该GEF蛋白的稳定性

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Sos1 is an universal, widely expressed Ras guanine nucleotide-exchange factor (RasGEF) in eukaryotic cells. Its N-terminal HD motif is known to be involved in allosteric regulation of Sos1 GEF activity through intramolecular interaction with the neighboring PH domain. Here, we searched for other cellular proteins also able to interact productively with the Sos1 HD domain. Using a yeast two-hybrid system, we identified the interaction between the Sos1 HD region and CSN3, the third component of the COP9 signalosome, a conserved, multi-subunit protein complex that functions in the ubiquitin-proteasome pathway to control degradation of many cellular proteins. The interaction of CSN3 with the HD of Sos1 was confirmed in vitro by GST pull-down assays using truncated mutants and reproduced in vivo by co-immunoprecipitation with the endogenous, full-length cellular Sos1 protein. In vitro kinase assays showed that PKD, a COP9 signalosome-associated-kinase, is able to phosphorylate Sos1. The intracellular levels of Sos1 protein were clearly diminished following CSN3 or PKD knockdown. A sizable fraction of the endogenous Sos1 protein was found ubiquitinated in different mammalian cell types. A significant reduction of RasGTP formation upon growth factor stimulation was also observed in CSN3-silenced as compared with control cells. Our data suggest that the interaction of Sos1 with the COP9 signalosome and PKD plays a significant role in maintenance of cellular Sos1 protein stability and homeostasis under physiological conditions and raises the possibility of considering the CSN/PKD complex as a potential target for design of novel therapeutic drugs.
机译:Sos1是在真核细胞中普遍表达的Ras鸟嘌呤核苷酸交换因子(RasGEF)。已知其N端高清基序通过与邻近PH结构域的分子内相互作用参与Sos1 GEF活性的变构调节。在这里,我们搜索了其他也可以与Sos1 HD域有效相互作用的细胞蛋白。使用酵母双杂交系统,我们确定了Sos1 HD区与CSN3之间的相互作用,CSN3是COP9信号小体的第三个组成部分,COP9信号小体是一种保守的多亚基蛋白复合体,在泛素-蛋白酶体途径中起作用,以控制许多细胞的降解蛋白质。 CSN3与Sos1 HD的相互作用在体外通过GST下拉测定法使用截短的突变体证实,并通过与内源性全长细胞Sos1蛋白的共免疫沉淀在体内复制。体外激酶测定表明,PKD(一种与COP9信号体相关的激酶)能够磷酸化Sos1。 CSN3或PKD敲低后,Sos1蛋白的细胞内水平明显降低。发现内源性Sos1蛋白的相当大一部分在不同的哺乳动物细胞类型中遍在蛋白化。与对照组相比,在沉默的CSN3中还观察到了生长因子刺激后RasGTP形成的显着减少。我们的数据表明,在生理条件下,Sos1与COP9信号小体和PKD的相互作用在维持细胞Sos1蛋白质的稳定性和体内稳态中起着重要作用,并增加了考虑将CSN / PKD复合物作为设计新型治疗药物的潜在目标的可能性。毒品。

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