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受体-受体相互作用:大脑整合的新概念。

Receptor-receptor interactions: A novel concept in brain integration.

机构信息

Department of BioMedical Sciences, University of Modena and IRCCS San Camillo, Lido Venezia, Italy.

出版信息

Prog Neurobiol. 2010 Feb 9;90(2):157-75. doi: 10.1016/j.pneurobio.2009.10.004. Epub 2009 Oct 20.

Abstract

A brief historical presentation of the hypothesis on receptor-receptor interactions as an important integrative mechanism taking place at plasma membrane level is given. Some concepts derived from this integrative mechanism especially the possible assemblage of receptors in receptor mosaics (high-order receptor oligomers) and their relevance for the molecular networks associated with the plasma membrane are discussed. In particular, the Rodbell's disaggregation theory for G-proteins is revisited in the frame of receptor mosaic model. The paper also presents some new indirect evidence on A2A;D2 receptor interactions obtained by means of Atomic Force Microscopy on immunogold preparations of A2A and D2 receptors in CHO cells. These findings support previous data obtained by means of computer-assisted confocal laser microscopy. The allosteric control of G-protein coupled receptors is examined in the light of the new views on allosterism and recent data on a homocysteine analogue capable of modulating D2 receptors are shown. Finally, the hypothesis is introduced on the existence of check-points along the amino acid pathways connecting allosteric and orthosteric binding sites of a receptor and their potential importance for drug development.

摘要

简要介绍了受体-受体相互作用假说作为一种发生在质膜水平上的重要整合机制的历史背景。本文讨论了源自这一整合机制的一些概念,特别是受体在受体镶嵌体(高阶受体寡聚体)中的可能组装及其与质膜相关的分子网络的相关性。特别是,在受体镶嵌模型的框架内重新审视了罗德尔(Rodbell)关于 G 蛋白解聚的理论。本文还通过原子力显微镜(Atomic Force Microscopy)在 CHO 细胞中 A2A 和 D2 受体的免疫金制剂上获得了一些关于 A2A;D2 受体相互作用的新的间接证据,这些发现支持了以前通过计算机辅助共聚焦激光显微镜获得的数据。本文还根据关于变构作用的新观点以及关于一种能够调节 D2 受体的同型半胱氨酸类似物的最新数据,考察了 G 蛋白偶联受体的变构调控。最后,提出了关于在连接受体变构和正构结合位点的氨基酸途径上存在检查点的假说,以及它们对药物开发的潜在重要性。

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