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Dissecting the ER-associated degradation of a misfolded polytopic membrane protein.

机译:解剖错误折叠的多聚膜蛋白的内质网相关降解。

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It remains unclear how misfolded membrane proteins are selected and destroyed during endoplasmic reticulum-associated degradation (ERAD). For example, chaperones are thought to solubilize aggregation-prone motifs, and some data suggest that these proteins are degraded at the ER. To better define how membrane proteins are destroyed, the ERAD of Ste6p(*), a 12 transmembrane protein, was reconstituted. We found that specific Hsp70/40s act before ubiquitination and facilitate Ste6p(*) association with an E3 ubiquitin ligase, suggesting an active role for chaperones. Furthermore, polyubiquitination was a prerequisite for retrotranslocation, which required the Cdc48 complex and ATP. Surprisingly, the substrate was soluble, and extraction was independent of a ubiquitin chain extension enzyme (Ufd2p). However, Ufd2p increased the degree of ubiquitination and facilitated degradation. These data indicate that polytopic membrane proteins can be extracted from the ER, and define the point of action of chaperones and the requirement for Ufd2p during membrane protein quality control.
机译:尚不清楚在内质网相关降解(ERAD)过程中如何选择并破坏错误折叠的膜蛋白。例如,伴侣蛋白被认为可溶解易于聚集的基序,并且一些数据表明这些蛋白在ER处被降解。为了更好地定义膜蛋白是如何被破坏的,重组了Ste12p(*)(一种12跨膜蛋白)的ERAD。我们发现,特定的Hsp70 / 40s在泛素化之前起作用,并促进Ste6p(*)与E3泛素连接酶的缔合,提示伴侣分子具有积极作用。此外,多泛素化是逆向转运的先决条件,这需要Cdc48复合物和ATP。出乎意料的是,底物是可溶的,并且提取独立于泛素扩链酶(Ufd2p)。但是,Ufd2p增加了泛素化程度并促进了降解。这些数据表明可以从内质网中提取多位膜蛋白,并确定伴侣蛋白的作用点以及在膜蛋白质量控制过程中对Ufd2p的需求。

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