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Molecular dissection of the Erv41-Erv46 retrograde receptor reveals a conserved cysteine-rich region in Erv46 required for retrieval activity

机译:Erv41-Erv46逆行受体的分子解剖揭示了Erv46中保守的富含半胱氨酸的区域该区域需要进行检索活动

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摘要

The Erv41-Erv46 complex is a conserved retrograde cargo receptor that retrieves ER resident proteins from Golgi compartments in a pH-dependent manner. Here we functionally dissect the Erv46 subunit and define an approximately 60 residue cysteine-rich region that is unique to the Erv46 family of proteins. This cysteine-rich region contains two vicinal cysteine pairs in CXXC and CCXXC configurations that are each required for retrieval activity in cells. Mutation of the individual cysteine residues produced stable Erv46 proteins that were partially reduced and form mixed-disulfide species on nonreducing gels. Conserved hydrophobic amino acids within the cysteine-rich region of Erv46 were also required for retrieval function in cells. In vitro binding experiments showed that this hydrophobic patch is required for direct cargo binding. Surprisingly, the Erv46 cysteine mutants continued to bind cargo in cell-free assays and produced an increased level of Erv46-cargo complexes in cell extracts suggesting that disulfide linkages in the cysteine-rich region perform a role in releasing bound cargo. On the basis of these findings, we propose that both pH and redox environments regulate cargo binding to a hydrophobic site within the cysteine-rich region of Erv46.
机译:Erv41-Erv46复合物是一种保守的逆行货物受体,可以以pH依赖的方式从高尔基体区室检索ER驻留蛋白。在这里,我们在功能上解剖Erv46亚基,并定义了大约60个残基的富含半胱氨酸的区域,该区域是Erv46蛋白质家族所独有的。这个富含半胱氨酸的区域包含两个CXXC和CCXXC构型的相邻的半胱氨酸对,每个对都是细胞恢复活性所必需的。单个半胱氨酸残基的突变产生稳定的Erv46蛋白,该蛋白被部分还原并在非还原凝胶上形成混合的二硫化物。 Erv46富含半胱氨酸区域内的保守疏水氨基酸对于细胞恢复功能也是必需的。体外结合实验表明,这种疏水补丁是直接货物结合所必需的。出人意料的是,Erv46半胱氨酸突变体在无细胞分析中继续与货物结合,并在细胞提取物中产生了更高水平的Erv46-货物复合物,表明富含半胱氨酸的区域中的二硫键在释放结合的货物中发挥了作用。根据这些发现,我们建议pH和氧化还原环境均能调节货物与Erv46富含半胱氨酸区域内疏水位点的结合。

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