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用于研究大肠杆菌巨大原生质球中细菌离子通道的膜片钳电生理学技术。

Patch clamp electrophysiology for the study of bacterial ion channels in giant spheroplasts of E. coli.

作者信息

Martinac Boris, Rohde Paul R, Cranfield Charles G, Nomura Takeshi

机构信息

Victor Chang Cardiac Research Institute, Darlinghurst, Australia.

出版信息

Methods Mol Biol. 2013;966:367-80. doi: 10.1007/978-1-62703-245-2_23.

Abstract

Ion channel studies have been focused on ion channels from animal and human cells over many years. Based on the knowledge acquired, predominantly over the last 20 years, a large diversity of ion channels exists in cellular membranes of prokaryotes as well. Paradoxically, most of what is known about the structure of eukaryotic ion channels is based on the structure of bacterial channels. This is largely due to the suitability of bacterial cells for functional and structural studies of biological macromolecules in a laboratory environment. Development of the "giant spheroplast" preparation from E. coli cells was instrumental for functional studies of ion channels in the bacterial cell membrane. Here we describe detailed protocols used for the preparation of giant spheroplasts as well as protocols used for the patch-clamp recording of native or heterologously expressed ion channels in E. coli spheroplast membrane.

摘要

多年来,离子通道研究一直聚焦于动物和人类细胞的离子通道。基于所获得的知识,主要是过去20年里的知识,原核生物细胞膜中也存在大量多样的离子通道。矛盾的是,目前所知的真核离子通道结构大多基于细菌通道的结构。这很大程度上是因为细菌细胞适合在实验室环境中对生物大分子进行功能和结构研究。从大肠杆菌细胞制备“巨大球状体”对细菌细胞膜中离子通道的功能研究起到了重要作用。在此,我们描述了用于制备巨大球状体的详细方案以及用于在大肠杆菌球状体膜中对天然或异源表达的离子通道进行膜片钳记录的方案。

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