Yeagle Philip L, Albert Arlene D
Department of Molecular and Cell Biology, University of Connecticut, Storrs, CT 06269, USA.
Biochim Biophys Acta. 2007 Apr;1768(4):808-24. doi: 10.1016/j.bbamem.2006.10.002. Epub 2006 Oct 10.
Because of their central role in regulation of cellular function, structure/function relationships for G-protein coupled receptors (GPCR) are of vital importance, yet only recently have sufficient data been obtained to begin mapping those relationships. GPCRs regulate a wide range of cellular processes, including the senses of taste, smell, and vision, and control a myriad of intracellular signaling systems in response to external stimuli. Many diseases are linked to GPCRs. A critical need exists for structural information to inform studies on mechanism of receptor action and regulation. X-ray crystal structures of only one GPCR, in an inactive state, have been obtained to date. However considerable structural information for a variety of GPCRs has been obtained using non-crystallographic approaches. This review begins with a review of the very earliest GPCR structural information, mostly derived from rhodopsin. Because of the difficulty in crystallizing GPCRs for X-ray crystallography, the extensive published work utilizing alternative approaches to GPCR structure is reviewed, including determination of three-dimensional structure from sparse constraints. The available X-ray crystallographic analyses on bovine rhodopsin are reviewed as the only available high-resolution structures for any GPCR. Structural information available on ligand binding to several receptors is included. The limited information on excited states of receptors is also reviewed. It is concluded that while considerable basic structural information has been obtained, more data are needed to describe the molecular mechanism of activation of a GPCR.
由于G蛋白偶联受体(GPCR)在细胞功能调节中发挥核心作用,其结构与功能的关系至关重要,但直到最近才获得足够的数据来开始描绘这些关系。GPCR调节广泛的细胞过程,包括味觉、嗅觉和视觉,并且响应外部刺激控制无数的细胞内信号系统。许多疾病都与GPCR有关。迫切需要结构信息来为受体作用和调节机制的研究提供依据。迄今为止,仅获得了一种处于非活性状态的GPCR的X射线晶体结构。然而,使用非晶体学方法已经获得了各种GPCR的大量结构信息。本综述首先回顾了最早的GPCR结构信息,这些信息大多来自视紫红质。由于难以将GPCR结晶用于X射线晶体学,因此对利用替代方法研究GPCR结构的大量已发表工作进行了综述,包括从稀疏约束条件确定三维结构。对牛视紫红质的现有X射线晶体学分析进行了综述,这是任何GPCR唯一可用的高分辨率结构。还包括了关于配体与几种受体结合的结构信息。对受体激发态的有限信息也进行了综述。得出的结论是,虽然已经获得了大量的基本结构信息,但仍需要更多数据来描述GPCR激活的分子机制。