Léonard A, Dufourc E J
Centre de Recherche Paul Pascal, CNRS, Pessac, France.
Biochimie. 1991 Oct;73(10):1295-302. doi: 10.1016/0300-9084(91)90092-f.
The effects of cholesterol on the structure and dynamics of dimyristoylphosphatidylcholine (DMPC) model membranes have been monitored as functions of temperature and cholesterol concentration in the membrane. The use of deuterium labels both on the cholesterol fused ring system and on the lipid chains in conjunction with solid state deuterium nuclear magnetic resonance (2H-NMR) afforded to monitor the degree of ordering of both molecules in a mixed system. The degree of ordering of the lipid head group was followed by phosphorus-31 (31P)-NMR. New findings on the effect of cholesterol on DMPC may be summarized as follows: i) cholesterol disorders the lipid chains below temperature of the DMPC gel-to-fluid transition (Tc) and orders them above; the effect is linear with cholesterol concentration at 0 and 60 degrees C but for intermediate temperatures, a saturation effect is observed at 20-30 mol %; ii) the ordering-disordering effects are perceived similarly by all chain segments with, however, a greater sensitivity for positions near the bilayer center; iii) below Tc, the lipid head group is considerably disordered by increasing amounts of cholesterol but slightly affected above; iv) the degree of ordering of cholesterol is quasi temperature independent for fractions greater than or equal to 30%; v) the average orientation of the cholesterol rigid body is perpendicular to the bilayer surface and exhibits little variations with temperature and cholesterol concentration. Variations in membrane dynamics are interpreted in terms of cholesterol-induced changes in bilayer thickness.(ABSTRACT TRUNCATED AT 250 WORDS)
已监测胆固醇对二肉豆蔻酰磷脂酰胆碱(DMPC)模型膜的结构和动力学的影响,这些影响是膜中温度和胆固醇浓度的函数。在胆固醇稠环系统和脂质链上都使用氘标记,并结合固态氘核磁共振(2H-NMR)来监测混合系统中两种分子的有序程度。脂质头部基团的有序程度通过磷-31(31P)-NMR进行跟踪。关于胆固醇对DMPC影响的新发现可总结如下:i)在DMPC凝胶-流体转变温度(Tc)以下,胆固醇会使脂质链无序,而在该温度以上则使其有序;在0和60摄氏度时,这种影响与胆固醇浓度呈线性关系,但在中间温度下,在20-30摩尔%时会观察到饱和效应;ii)所有链段对有序-无序效应的感知相似,不过,靠近双层中心的位置敏感性更高;iii)在Tc以下,随着胆固醇含量增加,脂质头部基团会明显无序,但在该温度以上影响较小;iv)对于大于或等于30%的部分,胆固醇的有序程度几乎与温度无关;v)胆固醇刚体的平均取向垂直于双层表面,并且随温度和胆固醇浓度变化很小。膜动力学的变化根据胆固醇引起的双层厚度变化来解释。(摘要截短于250字)