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首页> 外文期刊>Journal of Molecular Biology >Differential ubiquitination of Smad1 mediated by CHIP: implications in the regulation of the bone morphogenetic protein signaling pathway.
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Differential ubiquitination of Smad1 mediated by CHIP: implications in the regulation of the bone morphogenetic protein signaling pathway.

机译:CHIP介导的Smad1的差异泛素化:在骨形态发生蛋白信号通路调控中的意义。

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摘要

Smad1, a downstream regulator of the bone morphogenetic protein (BMP) receptors, is tightly regulated by the ubiquitin-proteasomal degradation system. To dissect the mechanisms that underlie the regulation of Smad1, it is important to investigate the specific ubiquitination site(s) in Smad1. Here we report that the alpha-NH(2) group of the N terminus and the epsilon-NH(2) groups of internal lysine residues 116, 118 and 269 (K116, K118 and K269) of Smad1 are ubiquitin acceptor sites mediated by the carboxyl terminus of Hsc70-interacting protein (CHIP). The in vitro degradation assay indicates that ubiquitination at the N terminus partially contributes to the degradation of Smad1. Furthermore, we demonstrate that the ubiquitination level of pseudo-phosphorylated Smad1 by CHIP is stronger than that of wild-type Smad1 and can be strongly inhibited by a phosphorylated tail of Smad1, PIS(pS)V(pS). Third, our results indicate that Hsp70 facilitates CHIP-mediated poly-ubiquitination of Smad1 whereas it attenuates CHIP-meditated mono-ubiquitination of Smad1. Finally, consistent with the in vitro observation, we show that CHIP preferentially mediates the degradation of phospho-Smad1/5 in vivo. Taken together, these results provide us a hint that CHIP might preferentially regulate phosphorylated Smad1 and thus the BMP signaling.
机译:Smad1是骨形态发生蛋白(BMP)受体的下游调节剂,其受到遍在蛋白-蛋白酶体降解系统的严格调控。为了剖析Smad1调控的基础机制,重要的是研究Smad1中特定的泛素化位点。在这里,我们报告的Smad1 N末端的alpha-NH(2)组和内部赖氨酸残基116、118和269(K116,K118和K269)的epsilon-NH(2)组是由Smad1介导的遍在蛋白受体位点。 Hsc70相互作用蛋白(CHIP)的羧基末端。体外降解试验表明,N末端的泛素化部分导致了Smad1的降解。此外,我们证明了CHIP伪磷酸化Smad1的泛素化水平强于野生型Smad1,并且可以被Smad1的磷酸化尾巴PIS(pS)V(pS)强烈抑制。第三,我们的结果表明Hsp70促进Smad1的CHIP介导的多泛素化,而它减弱Smad1的CHIP介导的单泛素化。最后,与体外观察结果一致,我们显示CHIP在体内优先介导磷酸Smad1 / 5的降解。综上所述,这些结果为我们提供了一个提示,即CHIP可能优先调节磷酸化的Smad1,从而调节BMP信号传导。

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