首页> 外文期刊>The Journal of biological chemistry >Role of HERP and a HERP-related Protein in HRD1-dependent Protein Degradation at the Endoplasmic Reticulum
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Role of HERP and a HERP-related Protein in HRD1-dependent Protein Degradation at the Endoplasmic Reticulum

机译:HERP和HERP相关蛋白在内质网的HRD1依赖性蛋白质降解中的作用

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Misfolded proteins of the endoplasmic reticulum (ER) are retrotranslocated to the cytosol and degraded by the proteasome via a process termed ER-associated degradation (ERAD). The precise mechanism of retrotranslocation is unclear. Here, we use several lumenal ERAD substrates targeted for degradation by the ubiquitin ligase HRD1 including SHH (sonic hedgehog) and NHK (null Hong Kong α1-antitrypsin) to study the geometry, organization, and regulation of the HRD1-containing ERAD machinery. We report a new HRD1-associated membrane protein named HERP2, which is homologous to the previously identified HRD1 partner HERP1. Despite sequence homology, HERP2 is constitutively expressed in cells, whereas HERP1 is highly induced by ER stress. We find that these proteins are required for efficient degradation of both glycosylated and nonglycosylated SHH proteins as well as NHK. In cells depleted of HERPs, SHH proteins are largely trapped inside the ER with a fraction of the stabilized SHH protein bound to the HRD1-SEL1L ligase complex. Ubiquitination of SHH is significantly attenuated in the absence of HERPs, suggesting a defect in retrotranslocation. Both HERP proteins interact with HRD1 through a region located in the cytosol. However, unlike its homolog in Saccharomyces cerevisiae, HERPs do not regulate HRD1 stability or oligomerization status. Instead, they help recruit DERL2 to the HRD1-SEL1L complex. Additionally, the UBL domain of HERP1 also seems to have a function independent of DERL2 recruitment in ERAD. Our studies have revealed a critical scaffolding function for mammalian HERP proteins that is required for forming an active retrotranslocation complex containing HRD1, SEL1L, and DERL2.
机译:内质网(ER)的错误折叠蛋白质被转回到胞浆上并通过蛋白酶通过称为ER相关的降解(ERAD)的方法来降解。重输扫描定位的精确机制尚不清楚。在这里,我们使用遍布泛素连接酶HRD1靶向降解的几个流明替代底物,包括SHH(Sonic Hedgehog)和NHK(NULL HONG KONGα1-Anti rrypsin)来研究几何形状,组织和调节HRD1的ERAD机械。我们报告了名为HERP2的新的HRD1相关膜蛋白,其与先前鉴定的HRD1合作伙伴HERP1同源。尽管序列同源性,但Herp2在细胞中构成脑部表达,而HERP1高度诱导受到ER应激。我们发现这些蛋白质是有效降解糖基化和尼糖基化的SHH蛋白以及NHK的有效降解。在疱疹的细胞中,SHH蛋白在ER内部被捕获,其稳定的SHH蛋白部分与HRD1-SEL1L连接酶复合物结合。在没有鼠疱疹的情况下,SHH的泛素显着衰减,这表明反向扩展的缺陷。两家疱疹蛋白质与位于胞质醇中的区域相互作用。然而,与其在酿酒酵母中的同源物不同,Herps不调节HRD1稳定性或低聚状态。相反,它们帮助招聘DERL2到HRD1-SEL1L复合体。此外,HERP1的UBL域似乎也有一个独立于ERAD招聘的功能。我们的研究表明,哺乳动物疱疹蛋白的关键支架功能是形成含有HRD1,SEL1L和DERL2的活性反向转移复合物所需的哺乳动物疱疹蛋白。

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