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克隆的青蛙和人类μ阿片受体的药理学比较揭示了阿片类药物亲和力和功能的差异。

A pharmacological comparison of the cloned frog and human mu opioid receptors reveals differences in opioid affinity and function.

作者信息

Brasel Chris M, Sawyer Gregory W, Stevens Craig W

机构信息

Dept. of Pharmacology and Physiology, OSU-Center for Health Sciences, Tulsa, OK 74107-1898, USA.

出版信息

Eur J Pharmacol. 2008 Dec 3;599(1-3):36-43. doi: 10.1016/j.ejphar.2008.09.043. Epub 2008 Oct 9.

Abstract

This study presents a direct comparison of the ligand binding and signaling profiles of a mammalian and non-mammalian mu opioid receptor. Opioid ligand binding and agonist potencies were determined for an amphibian (Rana pipiens) mu opioid receptor (rpMOR) and the human mu opioid receptor (hMOR) in transfected, intact Chinese hamster ovary (CHO) cells. Identical conditions were employed such that statistically meaningful differences between the two receptors could be determined. Identifying these differences is an important first step in understanding how evolutionary changes affect ligand binding and signaling in vertebrate opioid receptors. As expected, the rank of opioid ligand affinity for rpMOR and hMOR was consistent with the ligands' previously characterized type-selectivity. However, most of the opioid ligands tested had significant differences in affinity for rpMOR and hMOR. For example, the mu-selective agonist, DAMGO ([d-Ala(2), N-Me-Phe(4), Gly(5)-ol]-enkephalin), had a 10.9-fold greater affinity (K(i)) for hMOR (K(i)=268 nM) than rpMOR (K(i)=2914 nM). In addition, differences in signaling between these receptors were found by measuring inhibition of cAMP accumulation by morphine or DAMGO. DAMGO was significantly more potent (13.6-fold) in CHO cells expressing hMOR versus those expressing rpMOR. In addition, a significantly greater maximal inhibition was elicited by both opioid agonists in cells expressing hMOR. In summary, this study supports an ongoing effort to better understand how vertebrate evolution has shaped opioid receptor properties and function.

摘要

本研究对哺乳动物和非哺乳动物的μ阿片受体的配体结合及信号转导特征进行了直接比较。在转染的完整中国仓鼠卵巢(CHO)细胞中,测定了两栖动物(豹蛙)μ阿片受体(rpMOR)和人类μ阿片受体(hMOR)的阿片类配体结合情况及激动剂效力。采用相同条件以便确定两种受体之间具有统计学意义的差异。识别这些差异是理解进化变化如何影响脊椎动物阿片受体的配体结合和信号转导的重要第一步。正如预期的那样,rpMOR和hMOR对阿片类配体的亲和力排序与这些配体先前已确定的类型选择性一致。然而,所测试的大多数阿片类配体对rpMOR和hMOR的亲和力存在显著差异。例如,μ选择性激动剂DAMGO([d-Ala(2),N-Me-Phe(4),Gly(5)-ol]-脑啡肽)对hMOR(K(i)=268 nM)的亲和力比对rpMOR(K(i)=2914 nM)高10.9倍。此外,通过测量吗啡或DAMGO对cAMP积累的抑制作用,发现了这些受体之间信号转导的差异。在表达hMOR的CHO细胞中,DAMGO的效力明显更高(13.6倍),而在表达rpMOR的细胞中则不然。此外,两种阿片类激动剂在表达hMOR的细胞中引起的最大抑制作用明显更大。总之,本研究支持了一项正在进行的工作,即更好地理解脊椎动物进化如何塑造阿片受体的特性和功能。

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