Guang Wei, Wang Hongyan, Su Tao, Weinstein I Bernard, Wang Jia Bei
Department of Pharmaceutical Sciences, School of Pharmacy, University of Maryland Baltimore, 20 N Pine Street, Baltimore, MD 21201, USA.
Mol Pharmacol. 2004 Nov;66(5):1285-92. doi: 10.1124/mol.66.5..
The human mu-opioid receptor (HmuOR) is a G-protein coupled receptor that mediates analgesia, euphoria and other important central and peripheral neurological functions. In this study, we found in a yeast two-hybrid screen that a protein kinase C-interacting protein (PKCI) specifically interacts with the C terminus of HmuOR. The interaction of PKCI with HmuOR was recapitulated in Chinese hamster ovary cells that express the full-length HmuOR and PKCI proteins. The affinity of HmuOR for an opioid ligand and its ability to mediate the activation of a G-protein were not altered by their interaction. However, the association of PKCI with HmuOR reduced agonist-induced inhibition of adenylyl cyclase and suppressed HmuOR desensitization partially at the G protein level and completely at the adenylyl cyclase level. Furthermore, PMA-induced, but not DAMGO-induced, HmuOR phosphorylation was partially inhibited by the coexpression of PKCI, suggesting that PKCI exerts a selective regulatory effect on HmuOR signaling. This effect was specific to the mu-opioid receptor because delta-opioid receptor desensitization was unaffected by PKCI. In addition, behavioral studies revealed that both basal and morphine-induced analgesia were significantly enhanced in the mutant mice that lacked expression of PKCI gene, and these mice developed a greater extent of tolerance to morphine analgesia. Taken together, these results suggest that PKCI functions as a negative regulator in HmuOR desensitization, phosphorylation, and in mediating morphine analgesia.
人μ-阿片受体(HmuOR)是一种G蛋白偶联受体,介导镇痛、欣快感及其他重要的中枢和外周神经功能。在本研究中,我们通过酵母双杂交筛选发现一种蛋白激酶C相互作用蛋白(PKCI)特异性地与HmuOR的C末端相互作用。PKCI与HmuOR的相互作用在表达全长HmuOR和PKCI蛋白的中国仓鼠卵巢细胞中得到重现。HmuOR与阿片样物质配体的亲和力及其介导G蛋白激活的能力并未因它们的相互作用而改变。然而,PKCI与HmuOR的结合降低了激动剂诱导的腺苷酸环化酶抑制作用,并在G蛋白水平部分抑制了HmuOR脱敏,在腺苷酸环化酶水平完全抑制了HmuOR脱敏。此外,PKCI的共表达部分抑制了佛波酯(PMA)诱导而非DAMGO诱导的HmuOR磷酸化,表明PKCI对HmuOR信号传导发挥选择性调节作用。这种作用对μ-阿片受体具有特异性,因为δ-阿片受体脱敏不受PKCI影响。此外,行为学研究表明,在缺乏PKCI基因表达的突变小鼠中,基础镇痛和吗啡诱导的镇痛均显著增强,并且这些小鼠对吗啡镇痛产生了更大程度的耐受性。综上所述,这些结果表明PKCI在HmuOR脱敏、磷酸化及介导吗啡镇痛过程中起负调节作用。