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捕获失活的蛋白酶体鉴定出 Erg25 是内质网相关降解的底物。

The Capture of a Disabled Proteasome Identifies Erg25 as a Substrate for Endoplasmic Reticulum Associated Degradation.

机构信息

Department of Biological Sciences, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.

Biomedical Mass Spectrometry Center, University of Pittsburgh Schools of the Health Sciences, Pittsburgh, Pennsylvania, USA.

出版信息

Mol Cell Proteomics. 2020 Nov;19(11):1896-1909. doi: 10.1074/mcp.RA120.002050. Epub 2020 Aug 31.

Abstract

Studies in the yeast have helped define mechanisms underlying the activity of the ubiquitin-proteasome system (UPS), uncover the proteasome assembly pathway, and link the UPS to the maintenance of cellular homeostasis. However, the spectrum of UPS substrates is incompletely defined, even though multiple techniques-including MS-have been used. Therefore, we developed a substrate trapping proteomics workflow to identify previously unknown UPS substrates. We first generated a yeast strain with an epitope tagged proteasome subunit to which a proteasome inhibitor could be applied. Parallel experiments utilized inhibitor insensitive strains or strains lacking the tagged subunit. After affinity isolation, enriched proteins were resolved, in-gel digested, and analyzed by high resolution liquid chromatography-tandem MS. A total of 149 proteasome partners were identified, including all 33 proteasome subunits. When we next compared data between inhibitor sensitive and resistant cells, 27 proteasome partners were significantly enriched. Among these proteins were known UPS substrates and proteins that escort ubiquitinated substrates to the proteasome. We also detected Erg25 as a high-confidence partner. Erg25 is a methyl oxidase that converts dimethylzymosterol to zymosterol, a precursor of the plasma membrane sterol, ergosterol. Because Erg25 is a resident of the endoplasmic reticulum (ER) and had not previously been directly characterized as a UPS substrate, we asked whether Erg25 is a target of the ER associated degradation (ERAD) pathway, which most commonly mediates proteasome-dependent destruction of aberrant proteins. As anticipated, Erg25 was ubiquitinated and associated with stalled proteasomes. Further, Erg25 degradation depended on ERAD-associated ubiquitin ligases and was regulated by sterol synthesis. These data expand the cohort of lipid biosynthetic enzymes targeted for ERAD, highlight the role of the UPS in maintaining ER function, and provide a novel tool to uncover other UPS substrates via manipulations of our engineered strain.

摘要

在酵母中的研究帮助定义了泛素-蛋白酶体系统(UPS)活性的机制,揭示了蛋白酶体组装途径,并将 UPS 与细胞内稳态的维持联系起来。然而,即使使用了多种技术,包括 MS,UPS 底物的范围也没有完全定义。因此,我们开发了一种底物捕获蛋白质组学工作流程来鉴定以前未知的 UPS 底物。我们首先生成了一个带有泛素化蛋白酶体亚基标签的酵母菌株,可以在该菌株上施加蛋白酶体抑制剂。平行实验利用了抑制剂不敏感的菌株或缺乏标记亚基的菌株。亲和分离后,富集的蛋白质被分离,胶内消化,并通过高分辨率液相色谱-串联 MS 进行分析。共鉴定出 149 种蛋白酶体伴侣,包括所有 33 种蛋白酶体亚基。当我们接下来比较抑制剂敏感和抗性细胞之间的数据时,27 种蛋白酶体伴侣明显富集。这些蛋白质包括已知的 UPS 底物和将泛素化底物运送到蛋白酶体的蛋白质。我们还检测到 Erg25 作为一个高置信度的伴侣。 Erg25 是一种甲基氧化酶,将二甲基酵母甾醇转化为前质体膜固醇,麦角固醇。由于 Erg25 是内质网(ER)的驻留蛋白,并且以前没有被直接描述为 UPS 底物,我们想知道 Erg25 是否是内质网相关降解(ERAD)途径的靶标,该途径最常用于介导异常蛋白的蛋白酶体依赖性破坏。正如预期的那样,Erg25 被泛素化并与停滞的蛋白酶体相关联。此外,Erg25 的降解依赖于 ERAD 相关的泛素连接酶,并受固醇合成的调节。这些数据扩展了 ERAD 靶向的脂质生物合成酶的队列,突出了 UPS 在维持 ER 功能中的作用,并提供了一种通过操纵我们的工程菌株来发现其他 UPS 底物的新工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7a6/7664122/a21d61ab6f90/SB-MCPJ200039F006.jpg

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