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内质网监控的逃逸使 Wsc1p 成为高尔基体质量控制的必需底物。

Evasion of endoplasmic reticulum surveillance makes Wsc1p an obligate substrate of Golgi quality control.

机构信息

Department of Biological Sciences, National University of Singapore, Singapore.

出版信息

Mol Biol Cell. 2010 Apr 1;21(7):1153-65. doi: 10.1091/mbc.e09-10-0910. Epub 2010 Feb 3.

Abstract

In the endoplasmic reticulum (ER), most newly synthesized proteins are retained by quality control mechanisms until folded. Misfolded molecules are sorted to ER-associated degradation (ERAD) pathways for disposal. Reports of mutant proteins degraded in the vacuole/lysosome suggested an independent Golgi-based mechanism also at work. Although little is understood of the post-ER pathway, the growing number of variants using it suggests a major role in quality control. Why seemingly redundant mechanisms in sequential compartments are needed is unclear. To understand their physiological relationship, the identification of endogenous pathway-specific substrates is a prerequisite. With ERAD substrates already well characterized, the discovery of Wsc1p as an obligate substrate of Golgi quality control enabled detailed cross-pathway analyses for the first time. By analyzing a panel of engineered substrates, the data show that the surveillance mode is determined by each polypeptide's intrinsic design. Although most secretory pathway proteins can display ERAD determinants when misfolded, the lack thereof shields Wsc1p from inspection by ER surveillance. Additionally, a powerful ER export signal mediates transport whether the luminal domain is folded or not. By evading ERAD through these passive and active mechanisms, Wsc1p is fully dependent on the post-ER system for its quality control.

摘要

在内质网 (ER) 中,大多数新合成的蛋白质通过质量控制机制保留,直到折叠。错误折叠的分子被分拣到 ER 相关降解 (ERAD) 途径进行处理。关于在液泡/溶酶体中降解的突变蛋白的报告表明,一种独立的基于高尔基体的机制也在起作用。尽管对 ER 后途径知之甚少,但越来越多的变体使用它表明其在质量控制中起主要作用。为什么需要在连续隔室中使用看似冗余的机制尚不清楚。为了了解它们的生理关系,识别内源性途径特异性底物是先决条件。由于已经很好地描述了 ERAD 底物,因此首次发现 Wsc1p 是高尔基体质量控制的必需底物,从而能够进行详细的交叉途径分析。通过分析一组工程化的底物,数据表明监视模式由每个多肽的固有设计决定。尽管大多数分泌途径蛋白在错误折叠时可以显示 ERAD 决定因素,但缺乏这种因素可以防止 Wsc1p 受到 ER 监视的检查。此外,强大的 ER 出口信号介导运输,无论腔域是否折叠。通过这些被动和主动机制逃避 ERAD,Wsc1p 完全依赖于 ER 后系统进行质量控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1dfb/2847520/062667eed10f/zmk0071094090001.jpg

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