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The E3 Ligase Smurf1 Regulates Wolfram Syndrome Protein Stability at the Endoplasmic Reticulum*

机译:E3连接酶Smurf1调节内质网的Wolfram综合征蛋白稳定性*

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摘要

The HECT-type ubiquitin ligase (E3) Smad ubiquitination regulatory factor 1 (Smurf1) targets various substrates, including Smad1/5, RhoA, Prickle 1, MEKK2, and JunB for degradation and thereby regulates adult bone formation and embryonic development. Here, we identify the endoplasmic reticulum (ER)-localized Wolfram syndrome protein (WFS1) as a specific degradation substrate of Smurf1. Mutations in the WFS1 gene cause Wolfram syndrome, an autosomal recessive disorder characterized by diabetes mellitus and optic atrophy. WFS1 negatively regulates the ER stress response, and WFS1 deficiency in mice increases ER stress and triggers apoptosis. We show that Smurf1 interacts with WFS1 at the ER and promotes the ubiquitination and proteasomal degradation of WFS1. A C-terminal luminal region in WFS1, including residues 667–700, is involved in this degradation. Wild-type WFS1 as well as a subset of WFS1 mutants that include this degron region are susceptible to Smurf1-mediated degradation. By contrast, pathophysiological deletion mutants of WFS1 lacking the degron, such as W648X, Y660X, and Q667X, are resistant to degradation by Smurf1. Depletion of Smurf1 by RNA interference results in increased WFS1 and decreased ATF6α levels. Furthermore, we show that ER stress induces Smurf1 degradation and WFS1 up-regulation. These findings reveal for the first time that Smurf1 targets an ER-localized protein for degradation and that Smurf1 is regulated by ER stress.
机译:HECT型泛素连接酶(E3)Smad泛素化调节因子1(Smurf1)靶向各种底物,包括Smad1 / 5,RhoA,Prickle 1,MEKK2和JunB降解,从而调节成年骨骼的形成和胚胎发育。在这里,我们确定内质网(ER)本地化的Wolfram综合症蛋白(WFS1)作为Smurf1的特定降解底物。 WFS1基因的突变会引起Wolfram综合征,这是一种常染色体隐性遗传疾病,其特征在于糖尿病和视神经萎缩。 WFS1负调节内质网应激反应,小鼠中WFS1缺乏会增加内质网应激并触发细胞凋亡。我们表明,Smurf1在急诊室与WFS1相互作用,并促进WFS1的泛素化和蛋白酶体降解。 WFS1的C末端腔区域,包括667-700残基,都参与了这种降解。野生型WFS1以及包括该德龙区域的WFS1突变体的子集易受Smurf1介导的降解。相比之下,缺少degron的WFS1的病理生理学缺失突变体,例如W648X,Y660X和Q667X,对Smurf1的降解具有抗性。 RNA干扰对Smurf1的消耗会导致WFS1升高和ATF6α水平降低。此外,我们表明内质网应激诱导Smurf1降解和WFS1上调。这些发现首次揭示了Smurf1靶向ER定位蛋白降解,而Smurf1受ER应激调节。

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