Department of Psychiatry, University of California, San Francisco, California 94158, USA.
J Biol Chem. 2011 Nov 18;286(46):40193-204. doi: 10.1074/jbc.M111.288555. Epub 2011 Sep 27.
μ-Type opioid receptors (MORs) are members of the large seven-transmembrane receptor family which transduce the effects of both endogenous neuropeptides and clinically important opioid drugs. Prolonged activation of MORs promotes their proteolytic degradation by endocytic trafficking to lysosomes. This down-regulation process is known to contribute to homeostatic regulation of cellular opioid responsiveness, but mechanisms that mediate and control MOR down-regulation have not been defined. We show here that lysosomal down-regulation of MORs is ESCRT (endosomal sorting complex required for transport)-dependent and involves ubiquitin-promoted transfer of internalized MORs from the limiting endosome membrane to lumen. We also show that MOR down-regulation measured by conventional radioligand binding assay is determined specifically by ubiquitination in the first cytoplasmic loop. Surprisingly, we were unable to find any role of ubiquitination in determining whether internalized receptors recycle or are delivered to lysosomes. Instead, this decision is dictated specifically by the MOR C-tail and occurs irrespectively of the presence or absence of receptor ubiquitination. Our results support a hierarchical organization of discrete ubiquitin-independent and -dependent sorting operations, which function non-redundantly in the conserved down-regulation pathway to mediate precise endocytic control. Furthermore, they show that this hierarchical mechanism discriminates the endocytic regulation of naturally occurring MOR isoforms. Moreover, they are the first to reveal, we believe, for any seven-transmembrane receptor, a functional role of ubiquitination in the first cytoplasmic loop.
μ 型阿片受体(MORs)是七跨膜受体家族的成员,可转导内源性神经肽和临床上重要的阿片类药物的作用。MOR 的长期激活通过内吞作用将其转运到溶酶体来促进其蛋白水解降解。这种下调过程被认为有助于细胞阿片类药物反应的动态平衡调节,但介导和控制 MOR 下调的机制尚未确定。我们在这里表明,溶酶体对 MORs 的下调是 ESCRT(内体分选复合物必需的运输)依赖性的,涉及泛素促进从限制内体膜到腔的内化 MOR 的转移。我们还表明,通过常规放射性配体结合测定测量的 MOR 下调是由第一细胞质环中的泛素化特异性决定的。令人惊讶的是,我们无法发现泛素化在确定内化受体是循环还是递送至溶酶体中起任何作用。相反,这个决定是由 MOR C 尾特异性决定的,并且与受体泛素化的存在与否无关。我们的结果支持离散的泛素非依赖性和依赖性分选操作的层次结构组织,它们在保守的下调途径中发挥非冗余作用,以介导精确的内吞控制。此外,它们表明这种层次机制区分了天然存在的 MOR 同工型的内吞调节。此外,我们相信,它们首次揭示了对于任何七跨膜受体,泛素化在第一细胞质环中的功能作用。