School of Life Sciences, University of Sussex, Brighton, UK.
Department of Molecular Medicine, Cornell University, Ithaca, NY, USA.
Methods Mol Biol. 2022;2510:253-264. doi: 10.1007/978-1-0716-2384-8_13.
Cholesterol dynamically regulates P2X7 receptor function in both physiological and pathological conditions. Studies suggest that cholesterol suppresses P2X7 receptor activity through direct binding or through indirect effects on the biophysical properties of the membrane. Notably, the palmitoylated C-terminus seems to counteract the action of cholesterol to make it less inhibitory. However, the mechanism underlying cholesterol-dependent regulation of P2X7 receptor remains unclear. Here we describe detailed methods that facilitate the quantification of P2X7 channel activity while controlling the amount of cholesterol in the system. We will first describe the use of methyl-β-cyclodextrin (MCD), a cyclic oligosaccharide consisting of seven glucose monomers, to decrease or increase plasma membrane cholesterol levels. We will then describe protocols for the reconstitution of purified P2X7 in proteoliposomes of defined lipid composition. These methods can be combined with commonly used techniques such as dye-uptake assays or electrophysiology. We also describe a fluorescence assay to measure cholesterol-binding to P2X7. These approaches are complementary to cryo-EM or molecular dynamics simulations, which are also powerful tools for investigating cholesterol-P2X7 interactions. An improved understanding of the mechanisms of action of cholesterol on P2X7 may contribute to elucidate the roles of this receptor in ageing, inflammation, and cancer, whose progression correlates with the level of cholesterol.
胆固醇在生理和病理条件下动态调节 P2X7 受体功能。研究表明,胆固醇通过直接结合或通过间接影响膜的物理特性来抑制 P2X7 受体活性。值得注意的是,棕榈酰化的 C 末端似乎抵消了胆固醇的作用,使其抑制作用降低。然而,胆固醇依赖性调节 P2X7 受体的机制尚不清楚。在这里,我们描述了详细的方法,这些方法有助于在控制系统中胆固醇含量的同时量化 P2X7 通道活性。我们将首先描述使用甲基-β-环糊精(MCD)来降低或增加质膜胆固醇水平。然后,我们将描述用于在具有明确定义脂质组成的脂筏中重建纯化的 P2X7 的方案。这些方法可以与常用的技术(如染料摄取测定或电生理学)结合使用。我们还描述了一种用于测量胆固醇与 P2X7 结合的荧光测定法。这些方法与冷冻电镜或分子动力学模拟互补,这些也是研究胆固醇-P2X7 相互作用的有力工具。对胆固醇对 P2X7 作用机制的更好理解可能有助于阐明该受体在衰老、炎症和癌症中的作用,这些疾病的进展与胆固醇水平相关。