Deng H B, Yu Y, Pak Y, O'Dowd B F, George S R, Surratt C K, Uhl G R, Wang J B
Department of Pharmaceutical Sciences, School of Pharmacy, University of Maryland, Baltimore, Maryland 21201, USA.
Biochemistry. 2000 May 9;39(18):5492-9. doi: 10.1021/bi991938b.
Determining which domains and amino acid residues of the mu opioid receptor are phosphorylated is critical for understanding the mechanism of mu opioid receptor phosphorylation. The role of the C-terminus of the receptor was investigated by examining the C-terminally truncated or point-mutated mu opioid receptors in receptor phosphorylation and desensitization. Both wild-type and mutated receptors were stably expressed in Chinese hamster ovary (CHO) cells. The receptor expression was confirmed by receptor radioligand binding and immunoblottting. After exposure to 5 microM of DAMGO, phosphorylation of the C-terminally truncated receptor and the mutant receptor T394A was reduced to 40 and 10% of that of the wild-type receptor, respectively. Mutation effects on agonist-induced desensitization were studied using adenylyl cyclase inhibition assays. The C-terminally truncated receptor and mutant receptor T394A both showed complete loss of DAMGO-induced desensitization, while the mutant T/S-7A receptor only lost part of its ability to desensitize. Taken together, these results suggest that the C-terminus of the mu opioid receptor participates in receptor phosphorylation and desensitization with threonine 394, a crucial residue for both features. DAMGO-induced mu opioid receptor phosphorylation and desensitization are associated and appear to involve both the mu opioid receptor C-terminus and other domains of the receptor.
确定μ阿片受体的哪些结构域和氨基酸残基发生磷酸化对于理解μ阿片受体磷酸化机制至关重要。通过检测C末端截短或点突变的μ阿片受体在受体磷酸化和脱敏中的作用,研究了该受体C末端的作用。野生型和突变型受体均在中国仓鼠卵巢(CHO)细胞中稳定表达。通过受体放射性配体结合和免疫印迹确认了受体表达。暴露于5μM的DAMGO后,C末端截短的受体和突变受体T394A的磷酸化分别降至野生型受体的40%和10%。使用腺苷酸环化酶抑制试验研究了突变对激动剂诱导的脱敏的影响。C末端截短的受体和突变受体T394A均表现出DAMGO诱导的脱敏完全丧失,而突变体T/S-7A受体仅丧失了部分脱敏能力。综上所述,这些结果表明,μ阿片受体的C末端通过苏氨酸394参与受体磷酸化和脱敏,苏氨酸394是这两个特征的关键残基。DAMGO诱导的μ阿片受体磷酸化和脱敏是相关的,似乎涉及μ阿片受体的C末端和受体的其他结构域。