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EDEM1(内质网相关降解增强因子)的周转是由多种降解途径介导的。

Turnover of EDEM1, an ERAD-enhancing factor, is mediated by multiple degradation routes.

机构信息

Department of Life Science, Graduated School of Engineering Science, Akita University, Akita, Japan.

Department of Life Science, Faculty of Engineering Science, Akita University, Akita, Japan.

出版信息

Genes Cells. 2024 Jun;29(6):486-502. doi: 10.1111/gtc.13117. Epub 2024 Apr 29.

Abstract

Quality-based protein production and degradation in the endoplasmic reticulum (ER) are essential for eukaryotic cell survival. During protein maturation in the ER, misfolded or unassembled proteins are destined for disposal through a process known as ER-associated degradation (ERAD). EDEM1 is an ERAD-accelerating factor whose gene expression is upregulated by the accumulation of aberrant proteins in the ER, known as ER stress. Although the role of EDEM1 in ERAD has been studied in detail, the turnover of EDEM1 by intracellular degradation machinery, including the proteasome and autophagy, is not well understood. To clarify EDEM1 regulation in the protein level, degradation mechanism of EDEM1 was examined. Our results indicate that both ERAD and autophagy degrade EDEM1 alike misfolded degradation substrates, although each degradation machinery targets EDEM1 in different folded states of proteins. We also found that ERAD factors, including the SEL1L/Hrd1 complex, YOD1, XTP3B, ERdj3, VIMP, BAG6, and JB12, but not OS9, are involved in EDEM1 degradation in a mannose-trimming-dependent and -independent manner. Our results suggest that the ERAD accelerating factor, EDEM1, is turned over by the ERAD itself, similar to ERAD clients.

摘要

内质网(ER)中基于质量的蛋白质产生和降解对于真核细胞的存活至关重要。在 ER 中蛋白质成熟期间,错误折叠或未组装的蛋白质通过称为 ER 相关降解(ERAD)的过程注定要被处理。EDEM1 是一种 ERAD 加速因子,其基因表达被 ER 中异常蛋白质的积累上调,称为 ER 应激。尽管 EDEM1 在 ERAD 中的作用已被详细研究,但包括蛋白酶体和自噬在内的细胞内降解机制对 EDEM1 的周转率了解甚少。为了阐明蛋白质水平上的 EDEM1 调节,检查了 EDEM1 的降解机制。我们的结果表明,ERAD 和自噬都降解 EDEM1,就像错误折叠的降解底物一样,尽管每种降解机制都针对蛋白质的不同折叠状态的 EDEM1。我们还发现 ERAD 因子,包括 SEL1L/Hrd1 复合物、YOD1、XTP3B、ERdj3、VIMP、BAG6 和 JB12,但不是 OS9,以甘露糖修剪依赖和独立的方式参与 EDEM1 降解。我们的结果表明,ERAD 加速因子 EDEM1 被 ERAD 本身所取代,类似于 ERAD 客户。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/701f/11163939/5d46cdab10a8/GTC-29-486-g003.jpg

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