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首页> 外文期刊>Journal of Molecular Biology >Ubiquitin-dependent Degradation of Id1 and Id3 is Mediated by the COP9 Signalosome.
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Ubiquitin-dependent Degradation of Id1 and Id3 is Mediated by the COP9 Signalosome.

机译:COP9 Signalosome介导Id1和Id3的泛素依赖性降解。

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摘要

Recently, evidence is accumulating pointing to a function of the COP9 signalosome (CSN) in regulation of ubiquitination by specific ubiquitin ligases. Here, we demonstrate by mammalian two-hybrid analysis that the transcriptional regulators and substrates of the ubiquitin system Id1 and Id3, but not Id2 and Id4, bind to the CSN subunit CSN5. Pull-down experiments revealed that Id3 physically interacts with the CSN complex. Additional far Western and pull-down studies with Id3 support our two-hybrid data and show that the transcription regulator can bind to CSN5 and CSN7. Recombinant Id3 is not phosphorylated by the CSN-associated kinases CK2 and PKD. However, it inhibits c-Jun and CSN2 phosphorylation by the isolated CSN complex and by the recombinant CK2. The inhibitors of CSN associated kinases, curcumin and emodin, significantly induce ubiquitination and proteasome-dependent degradation of transiently expressed Id3 in HeLa cells. Proteasome-dependent degradation of endogenous Id1 in HeLa cells is also stimulated by treatment with curcumin or emodin. Ubiquitination of Id3 is shown directly by cotransfection of HeLa cells with Id3 and His-ubiquitin cDNA. Curcumin increased Id3-ubiquitin conjugate formation, as shown by Western blotting and His-pull-downs. In addition, overexpression of CSN2 leads to stabilization of Id3 protein. On the basis of these data, it is speculated that CSN-mediated phosphorylation inhibits ubiquitination of Id1 and Id3.
机译:近来,越来越多的证据表明COP9信号体(CSN)在通过特定泛素连接酶调节泛素作用中的功能。在这里,我们通过哺乳动物的双杂交分析证明,泛素系统Id1和Id3的转录调节因子和底物,而不是Id2和Id4,结合到CSN亚基CSN5。下拉实验表明,Id3与CSN复合体发生物理相互作用。使用Id3进行的其他远距西方研究和下拉研究均支持我们的两种杂交数据,并表明转录调节因子可以与CSN5和CSN7结合。重组Id3不会被CSN相关激酶CK2和PKD磷酸化。但是,它通过分离的CSN复合物和重组CK2抑制c-Jun和CSN2磷酸化。 CSN相关激酶的抑制剂姜黄素和大黄素可显着诱导HeLa细胞中瞬时表达的Id3的泛素化和蛋白酶体依赖性降解。姜黄素或大黄素的处理还可以刺激HeLa细胞中内源Id1的蛋白酶体依赖性降解。 HeLa细胞与Id3和His-泛素cDNA的共转染直接显示了Id3的泛素化。姜黄素增加了Id3-泛素结合物的形成,如蛋白质印迹和His-pull-downs所示。此外,CSN2的过表达导致Id3蛋白的稳定。根据这些数据,推测CSN介导的磷酸化抑制Id1和Id3的泛素化。

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