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反向、多变及配体选择性激动作用:受体构象问题

Inverse, protean, and ligand-selective agonism: matters of receptor conformation.

作者信息

Kenakin T

机构信息

Department of Receptor Biochemistry, Glaxo SmithKline Research and Development, Research Triangle Park, North Carolina 27709, USA.

出版信息

FASEB J. 2001 Mar;15(3):598-611. doi: 10.1096/fj.00-0438rev.

Abstract

Concepts regarding the mechanisms by which drugs activate receptors to produce physiological response have progressed beyond considering the receptor as a simple on-off switch. Current evidence suggests that the idea that agonists produce only varying degrees of receptor activation is obsolete and must be reconciled with data to show that agonist efficacy has texture as well as magnitude. Thus, agonists can block system constitutive response (inverse agonists), behave as positive and inverse agonists on the same receptor (protean agonists), and differ in the stimulus pattern they produce in physiological systems (ligand-selective agonists). The molecular mechanism for this seemingly diverse array of activities is the same, namely, the selective microaffinity of ligands for different conformational states of the receptor. This paper reviews evidence for the existence of the various types of agonism and the potential therapeutic utility of different agonist types.-Kenakin, T. Inverse, protean, and ligand-selective agonism: matters of receptor conformation.

摘要

关于药物激活受体以产生生理反应的机制的概念,已经超越了将受体视为简单的开关的范畴。目前的证据表明,激动剂仅产生不同程度的受体激活这一观点已过时,必须与数据相协调,以表明激动剂的效能既有强度又有性质。因此,激动剂可以阻断系统组成性反应(反向激动剂),在同一受体上表现为正向和反向激动剂(万能激动剂),并且在生理系统中产生的刺激模式有所不同(配体选择性激动剂)。这种看似多样的活性的分子机制是相同的,即配体对受体不同构象状态的选择性微亲和力。本文综述了各种激动作用存在的证据以及不同类型激动剂的潜在治疗用途。——凯纳金,T. 反向、万能和配体选择性激动作用:受体构象问题

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