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磷脂酰乙醇胺 - 磷脂酰丝氨酸模型系统的多态性:胆固醇和Mg2+对Ca2+触发的双层向六方(HII)转变的影响。

Polymorphism of phosphatidylethanolamine-phosphatidylserine model systems: influence of cholesterol and Mg2+ on Ca2+-triggered bilayer to hexagonal (HII) transitions.

作者信息

Bally M B, Tilcock C P, Hope M J, Cullis P R

出版信息

Can J Biochem Cell Biol. 1983 Jun;61(6):346-52. doi: 10.1139/o83-048.

DOI:10.1139/o83-048
PMID:6883167
Abstract

Previous work has shown that Ca2+ can trigger bilayer to hexagonal (HII) polymorphic phase transitions in (unsaturated phosphatidylserine (PS)-phosphatidylethanolamine (PE) model systems. In this work we examine the influence of cholesterol and Mg2+ on the phase preferences of PS-PE systems. Subsequently, the influence of cholesterol and Mg2+ on the levels of Ca2+ required to trigger bilayer-HII transitions in these mixed systems is studied. It is shown that at 30 degrees C the presence of equimolar (with respect to phospholipid) levels of cholesterol engenders formation of the HII phase for PE-PS systems containing 15 and 30 mol% PS, whereas bilayer structure is maintained for PE-PS-cholesterol (1:1:2) dispersions. However, the polymorphic phase preferences of the latter system are much more sensitive to the presence of monovalent and divalent cations. In the absence of cholesterol, Mg2+ and high salt concentrations do not affect the polymorphic phase preferences of PE-PS (1:1) systems. In contrast, 8 mM or higher Mg2+ levels or salt concentrations greater than 1.0 M induce HII-phase formation in PE-PS-cholesterol (1:1:2) systems. Further, lower Mg2+ concentrations (2 mM) act as a powerful adjunct to Ca2+ triggering of HII-phase structure in such systems, reducing the Ca2+ concentration required from 4 to 0.25 mM. These results are discussed in terms of Ca2+ concentrations required for fusion events and the influence of cholesterol on the structural preferences of the inner monolayer lipids of the erythrocyte membrane.

摘要

先前的研究表明,在(不饱和磷脂酰丝氨酸(PS)-磷脂酰乙醇胺(PE)模型系统中,Ca2+可触发双层向六方(HII)多晶型相变。在本研究中,我们考察了胆固醇和Mg2+对PS-PE系统相偏好的影响。随后,研究了胆固醇和Mg2+对这些混合系统中触发双层-HII转变所需Ca2+水平的影响。结果表明,在30℃时,等摩尔(相对于磷脂)水平的胆固醇的存在促使含有15%和30%摩尔分数PS的PE-PS系统形成HII相,而对于PE-PS-胆固醇(1:1:2)分散体系则维持双层结构。然而,后一种体系的多晶型相偏好对单价和二价阳离子的存在更为敏感。在没有胆固醇的情况下,Mg2+和高盐浓度不会影响PE-PS(1:1)系统的多晶型相偏好。相反,8 mM或更高的Mg2+水平或大于1.0 M的盐浓度会诱导PE-PS-胆固醇(1:1:2)系统中形成HII相。此外,较低的Mg2+浓度(2 mM)可作为Ca2+触发此类系统中HII相结构的有力辅助因素,将所需的Ca2+浓度从4 mM降低至0.25 mM。根据融合事件所需的Ca2+浓度以及胆固醇对红细胞膜内层单分子层脂质结构偏好的影响对这些结果进行了讨论。

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