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首页> 外文期刊>The Journal of biological chemistry >Derlin2 Protein Facilitates HRD1-mediated Retro-translocation of Sonic Hedgehog at the Endoplasmic Reticulum
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Derlin2 Protein Facilitates HRD1-mediated Retro-translocation of Sonic Hedgehog at the Endoplasmic Reticulum

机译:Derllin2蛋白质有助于HRD1介导的HRD1介导的内质网在内质网上的声音刺猬静态

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摘要

Endoplasmic reticulum-associated degradation (ERAD) is an important system that eliminates misfolded proteins from the ER. Three derlins have been implicated in this process, but their precise function remains unknown. In this study, we report that although both derlin1 and derlin2 are capable of binding the ERAD-specific ubiquitin ligase HRD1, they associate with the HRD1-containing complex with different affinities. Accordingly, these derlins have nonredundant functions in ERAD with derlin2 being an essential functional partner for HRD1-mediated ERAD of SHH and NHK. We show that derlin2, but not derlin1 or derlin3, is required for ERAD of both glycosylated and nonglycosylated SHH, as well as NHK. Derlin2 appears to act at a post-targeting step for HRD1-dependent retro-translocation. Without derlin2, the assembly of HRD1 into a functional retro-translocation homo-oligomer proceeds normally, and substrate targeting to the HRD1 complex also occurs. However, the ERAD substrate SHH-C is largely trapped inside the ER lumen. These observations raise the possibility that derlin2 may regulate the movement of substrates through the HRD1-containing retro-translocon. Our study is the first to report that derlin2 functions with HRD1 in ERAD of certain substrates independent of their glycosylation status. The mammalian ERAD system may require multiple derlins that each functions with a distinct E3 partner to eliminate a specific subset of substrates. This is different from the model in Saccharomyces cerevisiae, in which Hrd1p alone is sufficient for retro-translocation.
机译:内质网相关降解(ERAD)是一种重要的系统,消除了来自ER的错误折叠蛋白质。在这个过程中,三个derlins已经涉及,但它们的精确功能仍然是未知的。在这项研究中,我们报告说,尽管Derlin1和Derlin2都能够结合Erad特异性泛素连接酶HRD1,它们与含HRD1的络合物与不同的亲和力相关联。因此,这些DERLINS在ERAD中具有非冗余功能,DERLIN2是HRD1介导的SHH和NHK的基本官能合作伙伴。我们表明DERLIN2但不是DERLIN1或DERLIN3,是糖基化和尼糖基化的SHH的ERAD以及NHK所必需的。 Derlin2似乎在HRD1依赖性复易转移的靶向步骤中采取行动。没有Derlin2,HRD1的组装成官能复易位的同源寡聚物正常进行,并且还发生靶向HRD1复合物的衬底。然而,Erad衬底ShH-C基本上被捕获在ER内腔内。这些观察结果提高了DERLIN2可以通过含HRD1的复载载体调节基板的运动。我们的研究是第一个报告DETLIN2在独立于其糖基化状态的特定基材中使用HRD1的功能。哺乳动物ERAD系统可能需要多个DERLINS,每个DERLINS各自用不同的E3合作伙伴来消除基板的特定子集。这与酿酒酵母中的模型不同,其中HRD1P单独足以进行复易转移。

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