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表面张力对含蛋白质和不含蛋白质的二棕榈酰磷脂酰胆碱双层膜相变的影响:分子动力学模拟

Surface tension effects on the phase transition of a DPPC bilayer with and without protein: a molecular dynamics simulation.

作者信息

Kong Xian, Qin Shanshan, Lu Diannan, Liu Zheng

机构信息

Department of Chemical Engineering, Tsinghua University, Beijing, 100084, China.

出版信息

Phys Chem Chem Phys. 2014 May 14;16(18):8434-40. doi: 10.1039/c3cp55524k.

Abstract

While the surface tension of a cell membrane, or a plasma membrane, regulates cell functions, little is known about its effect on the conformational changes of the lipid bilayer and hence the resulting changes in the cell membrane. To obtain some insights into the phase transition of the lipid bilayer as a function of surface tension, we used a 1,2-dipalmitoyl-sn-glycero-3-phosphocholine (DPPC) bilayer as a model lipid bilayer and aquaporin (AqpZ), a transmembrane channel protein for water, as a model embedded protein. A coarse-grained molecular dynamics simulation was applied to illustrate the phase transition behavior of the pure DPPC bilayer and aquaporin-embedded DPPC bilayer under different surface tensions. It was shown that an increased surface tension reduced the phase transition temperature of the DPPC bilayer. As for the DPPC bilayer in gel form, no significant changes occurred in the structure of the bilayer in response to the surface tension. Once in a liquid crystal state, both the structure and properties of the DPPC bilayer, such as area per lipid, lipid order parameters, bilayer thickness and lateral diffusion coefficients, were responsive to the magnitude of surface tension in a linear way. The presence of aquaporin attenuated the compact alignment of the lipid bilayer, hindered the parallel movement, and thus made the DPPC bilayer less sensitive to the surface tension.

摘要

虽然细胞膜(即质膜)的表面张力调节着细胞功能,但关于其对脂质双分子层构象变化以及由此导致的细胞膜变化的影响,我们所知甚少。为了深入了解脂质双分子层的相变如何随表面张力而变化,我们使用1,2 - 二棕榈酰 - sn - 甘油 - 3 - 磷酸胆碱(DPPC)双分子层作为模型脂质双分子层,并使用水通道蛋白(AqpZ,一种跨膜水通道蛋白)作为模型嵌入蛋白。应用粗粒度分子动力学模拟来阐明纯DPPC双分子层和嵌入水通道蛋白的DPPC双分子层在不同表面张力下的相变行为。结果表明,表面张力增加会降低DPPC双分子层的相变温度。对于凝胶态的DPPC双分子层,其双分子层结构在表面张力作用下无显著变化。一旦处于液晶态,DPPC双分子层的结构和性质,如每个脂质的面积、脂质序参数、双分子层厚度和横向扩散系数,都会以线性方式对表面张力的大小作出响应。水通道蛋白的存在减弱了脂质双分子层的紧密排列,阻碍了平行移动,从而使DPPC双分子层对表面张力的敏感度降低。

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