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多亚基泛素连接酶复合物在内溶酶体系统中的分选

Sorting of a multi-subunit ubiquitin ligase complex in the endolysosome system.

作者信息

Yang Xi, Arines Felichi Mae, Zhang Weichao, Li Ming

机构信息

Department of Molecular, Cellular and Developmental Biology, University of Michigan, Ann Arbor, United States.

出版信息

Elife. 2018 Jan 22;7:e33116. doi: 10.7554/eLife.33116.

Abstract

The yeast Dsc E3 ligase complex has long been recognized as a Golgi-specific protein ubquitination system. It shares a striking sequence similarity to the Hrd1 complex that plays critical roles in the ER-associated degradation pathway. Using biochemical purification and mass spectrometry, we identified two novel Dsc subunits, which we named as Gld1 and Vld1. Surprisingly, Gld1 and Vld1 do not coexist in the same complex. Instead, they compete with each other to form two functionally independent Dsc subcomplexes. The Vld1 subcomplex takes the AP3 pathway to reach the vacuole membrane, whereas the Gld1 subcomplex travels through the VPS pathway and is cycled between Golgi and endosomes by the retromer. Thus, instead of being Golgi-specific, the Dsc complex can regulate protein levels at three distinct organelles, namely Golgi, endosome, and vacuole. Our study provides a novel model of achieving multi-tasking for transmembrane ubiquitin ligases with interchangeable trafficking adaptors.

摘要

酵母Dsc E3连接酶复合体长期以来一直被认为是一种高尔基体特异性蛋白质泛素化系统。它与在内质网相关降解途径中起关键作用的Hrd1复合体具有显著的序列相似性。通过生化纯化和质谱分析,我们鉴定出两个新的Dsc亚基,我们将其命名为Gld1和Vld1。令人惊讶的是,Gld1和Vld1并不存在于同一个复合体中。相反,它们相互竞争形成两个功能独立的Dsc亚复合体。Vld1亚复合体通过AP3途径到达液泡膜,而Gld1亚复合体则通过VPS途径运输,并通过回收体在高尔基体和内体之间循环。因此,Dsc复合体并非高尔基体特异性的,而是可以在高尔基体、内体和液泡这三个不同的细胞器中调节蛋白质水平。我们的研究提供了一个新的模型,用于通过可互换的运输衔接子实现跨膜泛素连接酶的多任务功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4280/5811209/e2bb322be6cf/elife-33116-fig1.jpg

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