Structure, dynamics and composition of the lipid-protein interface. Perspectives from spin-labelling

Derek Marsh , László I Horváth
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引用次数: 228

Abstract

Implications of the data on lipid–protein interactions involving integral proteins that are obtained from EPR spectroscopy with spin-labelled lipids in membranes are reviewed. The lipid stoichiometry, selectivity and exchange dynamics at the lipid–protein interface can be determined, in addition to information on the configuration and rotational dynamics of the protein-associated lipid chains. These parameters, particularly the stoichiometry and selectivity, are directly related to the intramembranous structure and degree of oligomerisation of the integral protein, and conversely may be used to study the state of assembly of such proteins in the membrane. Insertion of proteins into membranes can be studied by analogous methods. Comparison with the results obtained from integral proteins helps to define the extent of membrane penetration and degree of transmembrane crossing that are relevant to protein translocation mechanisms.

脂-蛋白界面的结构、动力学和组成。自旋标签的观点
从EPR光谱中获得的与膜中自旋标记的脂质有关的脂-蛋白相互作用数据的含义进行了综述。除了蛋白质相关脂质链的构型和旋转动力学信息外,还可以确定脂质化学计量学、脂质-蛋白界面的选择性和交换动力学。这些参数,特别是化学计量学和选择性,与膜内结构和整体蛋白的寡聚化程度直接相关,反过来也可用于研究这些蛋白在膜内的组装状态。蛋白质插入膜可以用类似的方法来研究。与整体蛋白的结果比较有助于确定与蛋白质易位机制相关的膜穿透程度和跨膜交叉程度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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