Pole d'expertise Biotechnologie, Chimie & Biologie, Institut de Recherches Servier, Croissy-sur-Seine, France.
PHARMADEV (Pharmacochimie et biologie pour le développement), Faculté de Pharmacie, Toulouse, France.
Methods Mol Biol. 2022;2550:171-178. doi: 10.1007/978-1-0716-2593-4_21.
A way to study G protein-coupled receptors in a minimal system is to reconstruct artificial membrane mimics, made of detergent and/or of lipids in which the purified receptor is maintained. In particular, it is now possible to generate lipid nanoparticles, such as nanodiscs, in which a single receptor molecule is included. Such objects offer the invaluable potential of studying an isolated receptor stabilized in a finely controlled membrane-like environment to evaluate its pharmacology, its function, and its structure at the molecular level. In this chapter, we detail the different steps from the extraction and isolation of a recombinant MT1 melatonin receptor in detergent, down to its reconstitution into nanodiscs. A G protein activation test is further described in order to exemplify how the functionality of such particles may be investigated.
研究 G 蛋白偶联受体的一种方法是重建由去污剂和/或脂质组成的人工膜模拟物,其中纯化的受体得以维持。特别是,现在可以生成脂质纳米颗粒,例如纳米盘,其中包含单个受体分子。这些物体具有研究稳定在精细控制的类似膜环境中的分离受体的宝贵潜力,以评估其药理学、功能和分子水平的结构。在本章中,我们详细描述了从去污剂中提取和分离重组 MT1 褪黑素受体,直到将其重组成纳米盘的不同步骤。进一步描述了 G 蛋白激活测试,以举例说明如何研究此类颗粒的功能。