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双室原子力显微镜:探测分隔两个水相区室的膜蛋白。

Two-chamber AFM: probing membrane proteins separating two aqueous compartments.

作者信息

Gonçalves Rui Pedro, Agnus Guillaume, Sens Pierre, Houssin Christine, Bartenlian Bernard, Scheuring Simon

机构信息

Institut Curie, UMR168-CNRS, 26 Rue d'Ulm, 75248 Paris, France.

出版信息

Nat Methods. 2006 Dec;3(12):1007-12. doi: 10.1038/nmeth965. Epub 2006 Oct 22.

Abstract

Biological membranes compartmentalize and define physical borders of cells. They are crowded with membrane proteins that fulfill diverse crucial functions. About one-third of all genes in organisms code for, and the majority of drugs target, membrane proteins. To combine structure and function analysis of membrane proteins, we designed a two-chamber atomic force microscopy (AFM) setup that allows investigation of membranes spanned over nanowells, therefore separating two aqueous chambers. We imaged nonsupported surface layers (S layers) of Corynebacterium glutamicum at sufficient resolution to delineate a 15 A-wide protein pore. We probed the elastic and yield moduli of nonsupported membranes, giving access to the lateral interaction energy between proteins. We combined AFM and fluorescence microscopy to demonstrate the functionality of proteins in the setup by documenting proton pumping by Halobacterium salinarium purple membranes.

摘要

生物膜分隔并界定了细胞的物理边界。它们富含执行各种关键功能的膜蛋白。生物体中约三分之一的基因编码膜蛋白,并且大多数药物都以膜蛋白为靶点。为了结合膜蛋白的结构和功能分析,我们设计了一种双室原子力显微镜(AFM)装置,该装置可以研究跨越纳米孔的膜,从而分隔两个水相室。我们以足够的分辨率对谷氨酸棒杆菌的非支撑表面层(S层)进行成像,以勾勒出一个宽15埃的蛋白质孔。我们探测了非支撑膜的弹性模量和屈服模量,从而获得蛋白质之间的横向相互作用能。我们将AFM与荧光显微镜相结合,通过记录盐生盐杆菌紫膜的质子泵浦过程,来证明该装置中蛋白质的功能。

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