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μ-Opioid Receptor Cell Surface Expression Is Regulated by Its Direct Interaction with Ribophorin I

机译:μ阿片受体细胞表面表达受其直接调控 与核糖蛋白的相互作用 一世

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摘要

The trafficking of the μ-opioid receptor (MOR), a member of the rhodopsin G protein-coupled receptor (GPCR) family, can be regulated by interaction with multiple cellular proteins. To determine the proteins involved in receptor trafficking, using the targeted proteomic approach and mass spectrometry analysis, we have identified that Ribophorin I (RPNI), a component of the oligosaccharide transferase complex, could directly interact with MOR. RPNI can be shown to participate in MOR export by the intracellular retention of the receptor after small interfering RNA knockdown of endogenous RPNI. Overexpression of RPNI rescued the surface expression of the MOR 344KFCTR348 deletion mutant independent of calnexin. Furthermore, RPNI regulation of MOR trafficking is dependent on the glycosylation state of the receptor, as reflected by the inability of overexpression of RPNI to affect the trafficking of the N-glycosylation-deficient mutants, or GPCRs that have minimal glycosylation sites. Hence, this novel RPNI chaperone activity is a consequence of N-glycosylation-dependent direct interaction with MOR.
机译:视紫红质G蛋白偶联受体(GPCR)家族成员μ阿片受体(MOR)的运输可以通过与多种细胞蛋白相互作用来调节。为了确定参与受体运输的蛋白质,使用靶向蛋白质组学方法和质谱分析,我们已经确定了核糖蛋白I(RPNI),寡糖转移酶复合物的组成部分,可以直接与MOR相互作用。内源性RPNI的小分子干扰RNA敲低后,RPNI可以通过受体的细胞内保留来参与MOR输出。 RPNI的过表达挽救了独立于钙连蛋白的MOR 344KFCTR348缺失突变体的表面表达。此外,MNI转运的RPNI调节取决于受体的糖基化状态,这反映在RPNI的过表达无法影响N-糖基化缺陷型突变体或具有最小糖基化位点的GPCR的转运上。因此,这种新颖的RPNI伴侣活性是N-糖基化依赖性与MOR直接相互作用的结果。

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