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利用荧光共振能量转移和电子显微镜确定P2X4受体的分子形状、结构和大小。

Molecular shape, architecture, and size of P2X4 receptors determined using fluorescence resonance energy transfer and electron microscopy.

作者信息

Young Mark T, Fisher James A, Fountain Samuel J, Ford Robert C, North R Alan, Khakh Baljit S

机构信息

Manchester Interdisciplinary Biocentre, University of Manchester, Manchester M1 7DN, United Kingdom.

出版信息

J Biol Chem. 2008 Sep 19;283(38):26241-51. doi: 10.1074/jbc.M804458200. Epub 2008 Jul 17.

Abstract

P2X receptors are ATP-gated nonselective cation channels with important physiological roles. However, their structures are poorly understood. Here, we analyzed the architecture of P2X receptors using fluorescence resonance energy transfer (FRET) microscopy and direct structure determination using electron microscopy. FRET efficiency measurements indicated that the distance between the C-terminal tails of P2X(4) receptors was 5.6 nm. Single particle analysis of purified P2X(4) receptors was used to determine the three-dimensional structure at a resolution of 21A; the orientation of the particle with respect to the membrane was assigned by labeling the intracellular C termini with 1.8-nm gold particles and the carbohydrate-rich ectodomain with lectin. We found that human P2X(4) is a globular torpedo-like molecule with an approximate volume of 270 nm(3) and a compact propeller-shaped ectodomain. In this structure, the distance between the centers of the gold particles was 6.1 nm, which closely matches FRET data. Thus, our data provide the first views of the architecture, shape, and size of single P2X receptors, furthering our understanding of this important family of ligand-gated ion channels.

摘要

P2X受体是ATP门控的非选择性阳离子通道,具有重要的生理作用。然而,人们对其结构了解甚少。在此,我们使用荧光共振能量转移(FRET)显微镜分析了P2X受体的结构,并通过电子显微镜直接确定其结构。FRET效率测量表明,P2X(4)受体C末端尾巴之间的距离为5.6纳米。对纯化的P2X(4)受体进行单颗粒分析,以21埃的分辨率确定其三维结构;通过用1.8纳米的金颗粒标记细胞内C末端以及用凝集素标记富含碳水化合物的胞外域,确定颗粒相对于膜的方向。我们发现,人P2X(4)是一个近似鱼雷状的球状分子,体积约为270立方纳米,具有紧凑的螺旋桨状胞外域。在此结构中,金颗粒中心之间的距离为6.1纳米,与FRET数据非常吻合。因此,我们的数据首次展示了单个P2X受体的结构架构、形状和大小,加深了我们对这个重要的配体门控离子通道家族的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f48/2533801/2dfe6d96b67c/zbc0400850160001.jpg

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