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The Erv41–Erv46 complex serves as a retrograde receptor to retrieve escaped ER proteins

机译:Erv41–Erv46复合物充当逆行受体,以回收逃逸的ER蛋白

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Signal-dependent sorting of proteins in the early secretory pathway is required for dynamic retention of endoplasmic reticulum (ER) and Golgi components. In this study, we identify the Erv41–Erv46 complex as a new retrograde receptor for retrieval of non–HDEL-bearing ER resident proteins. In cells lacking Erv41–Erv46 function, the ER enzyme glucosidase I (Gls1) was mislocalized and degraded in the vacuole. Biochemical experiments demonstrated that the luminal domain of Gls1 bound to the Erv41–Erv46 complex in a pH-dependent manner. Moreover, in vivo disturbance of the pH gradient across membranes by bafilomycin A1 treatment caused Gls1 mislocalization. Whole cell proteomic analyses of deletion strains using stable isotope labeling by amino acids in culture identified other ER resident proteins that depended on the Erv41–Erv46 complex for efficient localization. Our results support a model in which pH-dependent receptor binding of specific cargo by the Erv41–Erv46 complex in Golgi compartments identifies escaped ER resident proteins for retrieval to the ER in coat protein complex I–formed transport carriers.
机译:内分泌网(ER)和高尔基体成分的动态保留需要早期分泌途径中的信号依赖蛋白的分类。在这项研究中,我们将Erv41–Erv46复合物鉴定为一种新的逆行受体,用于检索不含HDEL的ER驻留蛋白。在缺乏Erv41–Erv46功能的细胞中,ER酶葡糖苷酶I(Gls1)错位并在液泡中降解。生化实验表明,Gls1的腔结构域以pH依赖的方式与Erv41–Erv46复合物结合。此外,通过bafilomycin A1处理对跨膜pH梯度的体内干扰导致Gls1错位。使用稳定的同位素标记法对培养物中的氨基酸进行缺失菌株的全细胞蛋白质组学分析,确定了其他依赖于Erv41–Erv46复合物进行有效定位的ER驻留蛋白。我们的结果支持一个模型,其中高尔基区中Erv41-Erv46复合物的特定货物的pH依赖性受体结合识别出逃逸的ER驻留蛋白,以便在形成外壳蛋白复合物I的运输载体中检索到ER。

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