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The HECT domain ubiquitin ligase HUWE1 targets unassembled soluble proteins for degradation

机译:HECT域泛素连接酶HUWE1靶向未组装的可溶性蛋白进行降解

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In eukaryotes, many proteins function in multi-subunit complexes that require proper assembly. To maintain complex stoichiometry, cells use the endoplasmic reticulum-associated degradation system to degrade unassembled membrane subunits, but how unassembled soluble proteins are eliminated is undefined. Here we show that degradation of unassembled soluble proteins (referred to as unassembled soluble protein degradation, USPD) requires the ubiquitin selective chaperone p97, its co-factor nuclear protein localization protein 4 (Npl4), and the proteasome. At the ubiquitin ligase level, the previously identified protein quality control ligase UBR1 (ubiquitin protein ligase E3 component n-recognin 1) and the related enzymes only process a subset of unassembled soluble proteins. We identify the homologous to the E6-AP carboxyl terminus (homologous to the E6-AP carboxyl terminus) domain-containing protein HUWE1 as a ubiquitin ligase for substrates bearing unshielded, hydrophobic segments. We used a stable isotope labeling with amino acids-based proteomic approach to identify endogenous HUWE1 substrates. Interestingly, many HUWE1 substrates form multi-protein complexes that function in the nucleus although HUWE1 itself is cytoplasmically localized. Inhibition of nuclear entry enhances HUWE1-mediated ubiquitination and degradation, suggesting that USPD occurs primarily in the cytoplasm. Altogether, these findings establish a new branch of the cytosolic protein quality control network, which removes surplus polypeptides to control protein homeostasis and nuclear complex assembly.
机译:在真核生物中,许多蛋白质在需要正确组装的多亚基复合物中起作用。为了维持复杂的化学计量,细胞使用内质网相关的降解系统降解未组装的膜亚基,但是如何消除未组装的可溶性蛋白尚不确定。在这里,我们显示未组装的可溶性蛋白的降解(称为未组装的可溶性蛋白降解,USPD)需要泛素选择性伴侣蛋白p97,其辅因子核蛋白定位蛋白4(Npl4)和蛋白酶体。在泛素连接酶水平上,先前确定的蛋白质质量控​​制连接酶UBR1(泛素蛋白连接酶E3组分n-识别1)和相关酶仅处理未组装的可溶性蛋白的一个子集。我们确定与E6-AP羧基末端(与E6-AP羧基末端同源)域的蛋白质HUWE1同源,作为泛素连接酶用于未受保护的疏水片段的底物。我们使用基于氨基酸的蛋白质组学方法对同位素进行标记,以鉴定内源性HUWE1底物。有趣的是,尽管HUWE1本身位于细胞质中,但许多HUWE1底物形成了在核中起作用的多蛋白复合物。抑制核进入会增强HUWE1介导的泛素化和降解,这表明USPD主要发生在细胞质中。总而言之,这些发现建立了胞质蛋白质质量控​​制网络的新分支,该网络除去了多余的多肽以控制蛋白质稳态和核复合体装配。

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