Barrantes F J
Institute of Biochemistry, CONICET, Universidad Nac. del Sur, Bahia Blanca, Argentina.
Crit Rev Biochem Mol Biol. 1989;24(5):437-78. doi: 10.3109/10409238909086961.
Detailed knowledge of the membrane framework surrounding the nicotinic acetylcholine receptor (AChR) is key to an understanding of its structure, dynamics, and function. Recent theoretical models discuss the structural relationship between the AChR and the lipid bilayer. Independent experimental data on the composition, metabolism, and dynamics of the AChR lipid environment are analyzed in the first part of the review. The composition of the lipids in which the transmembrane AChR chains are inserted bears considerable resemblance among species, perhaps providing this evolutionarily conserved protein with an adequate milieu for its optimal functioning. The effects of lipids on the latter are discussed in the second part of the review. The third part focuses on the information gained on the dynamics of AChR and lipids in the membrane, a section that also covers the physical properties and interactions between the protein, its immediate annulus, and the bulk lipid bilayer.
详细了解围绕烟碱型乙酰胆碱受体(AChR)的膜框架是理解其结构、动力学和功能的关键。最近的理论模型探讨了AChR与脂质双层之间的结构关系。综述的第一部分分析了关于AChR脂质环境的组成、代谢和动力学的独立实验数据。跨膜AChR链所插入的脂质组成在不同物种之间有相当大的相似性,这或许为这种进化上保守的蛋白质提供了一个使其能最佳发挥功能的适宜环境。综述的第二部分讨论了脂质对后者的影响。第三部分聚焦于在膜中AChR和脂质动力学方面所获得的信息,这一部分还涵盖了蛋白质、其紧邻区域以及脂质双层主体之间的物理性质和相互作用。