Liang Ying-Jian, Wu Dai-Fei, Stumm Ralf, Höllt Volker, Koch Thomas
Department of Pharmacology and Toxicology, Otto-von-Guericke University, Leipziger Str. 44, 39120 Magdeburg, Germany.
Cell Res. 2008 Jul;18(7):768-79. doi: 10.1038/cr.2008.71.
The interaction of mu-opioid receptor (MOPr) with the neuronal membrane glycoprotein M6a is known to facilitate MOPr endocytosis in human embryonic kidney 293 (HEK293) cells. To further study the role of M6a in the post-endocytotic sorting of MOPr, we investigated the agonist-induced co-internalization of MOPr and M6a and protein targeting after internalization in HEK293 cells that co-expressed HA-tagged MOPr and Myc-tagged M6a. We found that M6a, MOPr, and Rab 11, a marker for recycling endosomes, co-localized in endocytotic vesicles, indicating that MOPr and M6a are primarily targeted to recycling endosomes after endocytosis. Furthermore, co-expression of M6a augmented the post-endocytotic sorting of delta-opioid receptors into the recycling pathway, indicating that M6a might have a more general role in opioid receptor post-endocytotic sorting. The enhanced post-endocytotic sorting of MOPr into the recycling pathway was accompanied by a decrease in agonist-induced receptor down-regulation of M6a in co-expressing cells. We tested the physiological relevance of these findings in primary cultures of cortical neurons and found that co-expression of M6a markedly increased the translocation of MOPrs from the plasma membrane to intracellular vesicles at steady state and significantly enhanced both constitutive and agonist-induced receptor endocytosis. In conclusion, our results strongly indicate that M6a modulates MOPr endocytosis and post-endocytotic sorting and has an important role in receptor regulation.
已知μ-阿片受体(MOPr)与神经元膜糖蛋白M6a相互作用可促进人胚肾293(HEK293)细胞中MOPr的内吞作用。为了进一步研究M6a在MOPr内吞后分选过程中的作用,我们在共表达HA标签的MOPr和Myc标签的M6a的HEK293细胞中,研究了激动剂诱导的MOPr和M6a共内化以及内化后蛋白质的靶向作用。我们发现,M6a、MOPr和回收型内体的标志物Rab 11共定位于内吞小泡中,这表明MOPr和M6a在内吞作用后主要靶向回收型内体。此外,M6a的共表达增强了δ-阿片受体在内吞后分选中进入回收途径的过程,这表明M6a可能在阿片受体内吞后分选过程中具有更普遍的作用。MOPr在内吞后进入回收途径的增强伴随着共表达细胞中激动剂诱导的M6a受体下调的减少。我们在皮质神经元原代培养物中测试了这些发现的生理相关性,发现M6a的共表达在稳态下显著增加了MOPr从质膜向细胞内小泡的转运,并显著增强了组成型和激动剂诱导的受体内吞作用。总之,我们的结果有力地表明,M6a调节MOPr的内吞作用和内吞后分选,并在受体调节中起重要作用。