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负载多组分脂质双层中的异质分子分布。

Heterogeneous molecular distribution in supported multicomponent lipid bilayers.

作者信息

Tokumasu Fuyuki, Hwang Jeeseong, Dvorak James A

机构信息

Laboratory of Malaria and Vector Research, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

Langmuir. 2004 Feb 3;20(3):614-8. doi: 10.1021/la0355388.

Abstract

Membrane domains contribute important structural and functional attributes to biological membranes. We describe the heterogeneous nanoscale distribution of lipid molecules within microscale membrane domains in multicomponent lipid bilayers composed of dipalmitoylphosphatidylcholine (DPPC), dilauroylphosphatidylcholine (DLPC), and cholesterol (chol). The lipids were labeled with the fluorescent lipid analogues Bodipy-PC and DiI-C20:0 to identify the distribution of individual membrane components. We used a near-field scanning optical microscope (NSOM) at room temperature to identify the nanoscale structures in the membrane. Simultaneous multicolor NSOM imaging at the emission maxima of the fluorescent analogues revealed a patchy distribution of Bodipy-PC and DiI-C20:0 indicative of phase separations in the bilayer. In a cholesterol-free system (DPPC/DLPC = 1:1), NSOM images proved that the two phosphatidylcholine molecules can coexist in domains at the micrometer level but form nanoscopic patches within the domains; DPPC occurs at the edge of the domains, whereas DLPC is present throughout the domains. In the presence of cholesterol (DPPC/DLPC = 7:3, chol = 18.9%), the two lipid molecules were more miscible but incomplete phase separations also occurred. The average domain sizes were 140-200 nm, well below the resolution capabilities of diffraction-limited light microscopy techniques; the domains were unresolvable by confocal microscopy. Our high-resolution NSOM studies of membrane domain behavior provide a better understanding of complex membrane phase phenomena in multicomponent biological membranes.

摘要

膜结构域为生物膜赋予了重要的结构和功能特性。我们描述了由二棕榈酰磷脂酰胆碱(DPPC)、二月桂酰磷脂酰胆碱(DLPC)和胆固醇(chol)组成的多组分脂质双层中,脂质分子在微米级膜结构域内的异质纳米级分布。脂质用荧光脂质类似物Bodipy-PC和DiI-C20:0进行标记,以识别单个膜成分的分布。我们在室温下使用近场扫描光学显微镜(NSOM)来识别膜中的纳米级结构。在荧光类似物的发射最大值处进行同步多色NSOM成像,揭示了Bodipy-PC和DiI-C20:0的斑片状分布,表明双层中存在相分离。在无胆固醇体系(DPPC/DLPC = 1:1)中,NSOM图像证明这两种磷脂酰胆碱分子可以在微米级的结构域中共存,但在结构域内形成纳米级的斑块;DPPC出现在结构域的边缘,而DLPC则遍布整个结构域。在有胆固醇存在的情况下(DPPC/DLPC = 7:3,chol = 18.9%),这两种脂质分子的互溶性更高,但也发生了不完全的相分离。平均结构域大小为140 - 200纳米,远低于衍射极限光学显微镜技术的分辨率;这些结构域在共聚焦显微镜下无法分辨。我们对膜结构域行为的高分辨率NSOM研究,有助于更好地理解多组分生物膜中复杂的膜相现象。

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