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平均磷脂曲率对玻璃表面通过囊泡融合形成支撑双层膜的影响。

Effect of average phospholipid curvature on supported bilayer formation on glass by vesicle fusion.

作者信息

Hamai Chiho, Yang Tinglu, Kataoka Sho, Cremer Paul S, Musser Siegfried M

机构信息

Department of Molecular and Cellular Medicine, The Texas A&M University System Health Science Center, College Station, Texas 77843, USA.

出版信息

Biophys J. 2006 Feb 15;90(4):1241-8. doi: 10.1529/biophysj.105.069435. Epub 2005 Nov 18.

Abstract

The adsorption of large unilamellar vesicles composed of various combinations of phosphatidylcholine, phosphatidylethanolamine (PE), monomethyl PE, and dimethyl PE (PE-Me2) onto a glass surface was studied using fluorescence microscopy. The average lipid geometry within the vesicles, described mathematically by the average intrinsic curvature, C(0,ave), was methodically altered by changing the lipid ratios to determine the effect of intrinsic curvature on the ability of vesicles to rupture and form a supported lipid bilayer. We show that the ability of vesicles to create fluid planar bilayers is dependent on C(0,ave) and independent of the identity of the component lipids. When the C(0,ave) was approximately -0.1 nm(-1), the vesicles readily formed supported lipid bilayers with almost full mobility. In contrast, when the C(0,ave) ranged from approximately -0.2 to approximately -0.3 nm(-1), the adsorbed vesicles remained intact upon the surface. The results indicate that the average shape of lipid molecules within a vesicle (C(0,ave)) is essential for determining kinetically viable reactions that are responsible for global geometric changes.

摘要

利用荧光显微镜研究了由磷脂酰胆碱、磷脂酰乙醇胺(PE)、单甲基PE和二甲基PE(PE-Me2)的各种组合构成的大单层囊泡在玻璃表面的吸附情况。通过改变脂质比例,有条不紊地改变囊泡内平均脂质几何形状,该形状由平均固有曲率C(0,ave)以数学方式描述,以确定固有曲率对囊泡破裂并形成支撑脂质双层能力的影响。我们表明,囊泡形成流体平面双层的能力取决于C(0,ave),且与组成脂质的种类无关。当C(0,ave)约为-0.1 nm⁻¹时,囊泡易于形成具有几乎完全流动性的支撑脂质双层。相反,当C(0,ave)范围约为-0.2至约-0.3 nm⁻¹时,吸附的囊泡在表面上保持完整。结果表明,囊泡内脂质分子的平均形状(C(0,ave))对于确定导致整体几何变化的动力学可行反应至关重要。

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