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Change of motion and localization of cholesterol molecule during L(alpha)-H(II) transition.

作者信息

Hayakawa E, Naganuma M, Mukasa K, Shimozawa T, Araiso T

机构信息

Nanoelectronics Laboratory, Graduate School of Engineering, Hokkaido University, Sapporo, Japan.

出版信息

Biophys J. 1998 Feb;74(2 Pt 1):892-8. doi: 10.1016/S0006-3495(98)74012-3.

Abstract

Formation of the inverted hexagonal (H(II)) phase from the lamellar (L(alpha)) phase of bovine brain-extracted phosphatidylcholine (BBPC) and phosphatidylethanolamine (BBPE) was investigated using 31P-NMR with or without cholesterol. When the ratio of BBPC to BBPE was 1:1, the H(II) formation was observed in the presence of 33 mol% cholesterol (i.e., BBPC:BBPE:cholesterol = 1:1:1) at 47 degrees C. The fraction of the H(II) phase in the BBPC/BBPE/cholesterol system could be controlled by the addition of dioleoylglycerol. The change of molecular motion of cholesterol affected by the H(II) formation was measured at various ratios of the L(alpha) to H(II) phase with the time-resolved fluorescence depolarization method, using dehydroergosterol as a fluorescent probe. It is observed that the motion of cholesterol became vigorous in the mixture state of the L(alpha) and the H(II) phases compared to that in the L(alpha) or the H(II) phase only. These facts show that cholesterol has the strong ability to induce the H(II) phase, probably by special molecular motion, which includes change of its location from the headgroup area to the acyl-chain area.

摘要

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