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作为膜受体功能报告分子的离子通道:非洲爪蟾卵母细胞中的自动分析

Ion Channels as Reporters of Membrane Receptor Function: Automated Analysis in Xenopus Oocytes.

作者信息

Vivaudou Michel, Todorov Zlatomir, Reyes-Mejia Gina Catalina, Moreau Christophe

机构信息

Institut de Biologie Structurale (IBS), Université Grenoble Alpes, 71 Avenue des Martyrs CS 10090, 38044, Grenoble, Cedex 9, France.

CNRS, IBS, LabEx ICST, F-38044, Grenoble, France.

出版信息

Methods Mol Biol. 2017;1635:283-301. doi: 10.1007/978-1-4939-7151-0_15.

Abstract

G-protein-coupled receptors (GPCR) are the most widely used system of communication used by cells. They sense external signals and translate them into intracellular signals. The information is carried mechanically across the cell membrane, without perturbing its integrity. Agonist binding on the extracellular side causes a change in receptor conformation which propagates to the intracellular side and causes release of activated G-proteins, the first messengers of a variety of signaling cascades.Permitting access to powerful electrophysiological techniques, ion channels can be employed to monitor precisely the most proximal steps of GPCR signaling, receptor conformational changes, and G-protein release. The former is achieved by physical attachment of a potassium channel to the GPCR to create an Ion-Channel Coupled Receptor (ICCR). The latter is based on the use of G-protein-regulated potassium channels (GIRK). We describe here how these two systems may be used in the Xenopus oocyte heterologous system with a robotic system for increased throughput.

摘要

G蛋白偶联受体(GPCR)是细胞使用的最广泛的通讯系统。它们感知外部信号并将其转化为细胞内信号。信息通过机械方式穿过细胞膜,而不会破坏其完整性。激动剂在细胞外侧结合会导致受体构象发生变化,该变化会传播到细胞内侧并导致活化的G蛋白释放,G蛋白是各种信号级联反应的第一信使。利用强大的电生理技术,可以使用离子通道精确监测GPCR信号传导、受体构象变化和G蛋白释放的最近端步骤。前者是通过将钾通道物理连接到GPCR上以创建离子通道偶联受体(ICCR)来实现的。后者基于使用G蛋白调节的钾通道(GIRK)。我们在此描述如何在非洲爪蟾卵母细胞异源系统中结合机器人系统使用这两种系统以提高通量。

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