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膜信号复合物:对调节七螺旋受体信号传导的功能选择性配体开发的启示。

Membrane signalling complexes: implications for development of functionally selective ligands modulating heptahelical receptor signalling.

作者信息

Piñeyro Graciela

机构信息

Centre de Recherche Fernand Seguin, Hôpital L.H. Lafontaine, Université de Montréal, Canada.

出版信息

Cell Signal. 2009 Feb;21(2):179-85. doi: 10.1016/j.cellsig.2008.08.013. Epub 2008 Aug 28.

DOI:10.1016/j.cellsig.2008.08.013
PMID:18790047
Abstract

Technological development has considerably changed the way in which we evaluate drug efficacy and has led to a conceptual revolution in pharmacological theory. In particular, molecular resolution assays have revealed that heptahelical receptors may adopt multiple active conformations with unique signalling properties. It is therefore becoming widely accepted that ligand ability to stabilize receptor conformations with distinct signalling profiles may allow to direct the stimulus generated by an activated receptor towards a specific signalling pathway. This capacity to induce only a subset of the ensemble of responses regulated by a given receptor has been termed "functional selectivity" (or "stimulus trafficking"), and provides the bases for a highly specific regulation of receptor signalling. Concomitant with these observations, heptahelical receptors have been shown to associate with G proteins and effectors to form multimeric arrays. These complexes are constitutively formed during protein synthesis and are targeted to the cell surface as integral signalling units. Herein we summarize evidence supporting the existence of such constitutive signalling arrays and analyze the possibility that they may constitute viable targets for developing ligands with "functional selectivity".

摘要

技术发展极大地改变了我们评估药物疗效的方式,并引发了药理学理论的概念性革命。特别是,分子分辨率分析表明,七螺旋受体可能具有多种具有独特信号特性的活性构象。因此,越来越多的人接受这样一种观点,即配体稳定具有不同信号特征的受体构象的能力可能使激活的受体产生的刺激导向特定的信号通路。这种仅诱导给定受体调节的反应集合中的一个子集的能力被称为“功能选择性”(或“刺激转导”),并为受体信号的高度特异性调节提供了基础。与这些观察结果相一致,七螺旋受体已被证明与G蛋白和效应器结合形成多聚体阵列。这些复合物在蛋白质合成过程中组成性形成,并作为完整的信号单元靶向细胞表面。在此,我们总结了支持此类组成性信号阵列存在的证据,并分析了它们可能构成开发具有“功能选择性”配体的可行靶点的可能性。

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