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头足类动物微绒毛感光细胞膜的结构与动力学

Architecture and dynamics of microvillar photoreceptor membranes of a cephalopod.

作者信息

Paulsen R, Zinkler D, Delmelle M

出版信息

Exp Eye Res. 1983 Jan;36(1):47-56. doi: 10.1016/0014-4835(83)90088-x.

Abstract

Microvillar membranes of cephalopod photoreceptors, Eledone aldrovandii were analysed with respect to their protein and lipid composition. Molecular dynamics of this membrane type were investigated by ESR measurements using frog rod outer segment membranes as a reference system. The photoreceptor membrane is composed of about 56 wt% protein and 44 wt% lipid. Rhodopsin (mol wt 51 000) represents at least 70% of the membrane protein. The molar ratio of phospholipid to cholesterol to rhodopsin is about 55:24:1. Phosphatidylcholine (28.9 mol%) and phosphatidylethanolamine (27.8 mol%) are the major phospholipids. The ESR measurements suggest that the cephalopod photoreceptor membrane is less fluid than from rod outer segment membranes although the major phospholipids show remarkable high levels of polyunsaturated fatty acids (e.g. 88 mol% in phosphatidylethanolamine). It is concluded that the lower fluidity of microvillar membranes results in part from high cholesterol content and that a restricted mobility of rhodopsin in this membrane does not result only from the fact that the membrane is rolled into a microvillar structure.

摘要

对乌贼(Eledone aldrovandii)光感受器的微绒毛膜进行了蛋白质和脂质组成分析。以蛙视杆外段膜作为参考系统,通过电子自旋共振(ESR)测量研究了这种膜类型的分子动力学。光感受器膜由约56 wt%的蛋白质和44 wt%的脂质组成。视紫红质(分子量51000)至少占膜蛋白的70%。磷脂、胆固醇与视紫红质的摩尔比约为55:24:1。磷脂酰胆碱(28.9 mol%)和磷脂酰乙醇胺(27.8 mol%)是主要的磷脂。ESR测量表明,尽管主要磷脂中多不饱和脂肪酸含量显著较高(如磷脂酰乙醇胺中为88 mol%),但乌贼光感受器膜的流动性低于视杆外段膜。得出的结论是,微绒毛膜较低的流动性部分源于高胆固醇含量,且视紫红质在该膜中受限的流动性并非仅仅是因为膜卷成了微绒毛结构。

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