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二甲基亚砜、单羟基和多羟基低温溶剂与水合磷脂双层相互作用的分子动力学模拟

Molecular dynamics simulations of the interactions of DMSO, mono- and polyhydroxylated cryosolvents with a hydrated phospholipid bilayer.

作者信息

Malajczuk Chris J, Hughes Zak E, Mancera Ricardo L

机构信息

Western Australian Biomedical Research Institute, Curtin Health Innovation Research Institute, School of Biomedical Sciences, Curtin University, P.O. Box U1987, Perth WA 6845, Australia.

出版信息

Biochim Biophys Acta. 2013 Sep;1828(9):2041-55. doi: 10.1016/j.bbamem.2013.05.010. Epub 2013 May 21.

Abstract

Molecular dynamics (MD) simulations have been used to investigate the interactions of a variety of hydroxylated cryosolvents (glycerol, propylene glycol and ethylene glycol), methanol and dimethyl sulfoxide (DMSO) in aqueous solution with a 1,2-dipalmitoyl-sn-glycero-3-phosphatidylcholine (DPPC) bilayer in its fluid phase at 323K. Each cryosolvent induced lateral expansion of the membrane leading to thinning of the bilayer and resulting in disordering of the lipid hydrocarbon chains. Propylene glycol and DMSO were observed to exhibit a greater disordering effect on the structure of the membrane than the other three alcohols. Closer examination exposed a number of effects on the lipid bilayer as a function of the molecular size and hydrogen bonding capacity of the cryosolvents. Analyses of hydrogen bonds revealed that increased concentrations of the polyhydroxylated cryosolvents induced the formation of a cross-linked cryosolvent layer across the surface of the membrane bilayer. This effect was most pronounced for glycerol at sufficiently high concentrations, which displayed a comparatively enhanced capacity to induce cross-linking of lipid headgroups resulting in the formation of extensive hydrogen bonding bridges and the promotion of a dense cryosolvent layer across the phospholipid bilayer.

摘要

分子动力学(MD)模拟已被用于研究在323K的流体相中,多种羟基化低温溶剂(甘油、丙二醇和乙二醇)、甲醇和二甲基亚砜(DMSO)在水溶液中与1,2-二棕榈酰-sn-甘油-3-磷酸胆碱(DPPC)双层膜之间的相互作用。每种低温溶剂都会引起膜的横向扩张,导致双层膜变薄,并使脂质烃链无序化。观察到丙二醇和DMSO对膜结构的无序化作用比其他三种醇类更大。进一步研究发现,根据低温溶剂的分子大小和氢键结合能力,其对脂质双层有多种影响。氢键分析表明,多羟基化低温溶剂浓度的增加会诱导在膜双层表面形成交联的低温溶剂层。对于甘油,在足够高的浓度下这种效应最为明显,它表现出相对增强的诱导脂质头基交联的能力,导致形成广泛的氢键桥,并促进在磷脂双层上形成致密的低温溶剂层。

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