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粗粒化分子动力学模拟揭示曲率对脂质体中脂质堆积和动力学的影响。

Curvature effects on lipid packing and dynamics in liposomes revealed by coarse grained molecular dynamics simulations.

作者信息

Risselada H Jelger, Marrink Siewert J

机构信息

Groningen Biomolecular Sciences and Biotechnology, Institute & Zernike Institute for Advanced Materials, University of Groningen, Nijenborgh 4, 9747 AG, Groningen, The Netherlands.

出版信息

Phys Chem Chem Phys. 2009 Mar 28;11(12):2056-67. doi: 10.1039/b818782g. Epub 2009 Jan 29.

Abstract

The molecular packing details of lipids in planar bilayers are well characterized. For curved bilayers, however, little data is available. In this paper we study the effect of temperature and membrane composition on the structural and dynamical properties of a liposomal membrane in the limit of high curvature (liposomal diameter of 15-20 nm), using coarse grained molecular dynamics simulations. Both pure dipalmitoyl phosphatidylcholine (DPPC) liposomes and binary mixtures of DPPC and either dipalmitoylphosphatidylethanolamine (DPPE) or polyunsaturated dilinoleylphosphatidylcholine (DLiPC) lipids are modeled. We take special care in the equilibration of the liposomes requiring lipid flip-flopping, which can be facilitated by the temporary insertion of artificial pores. The equilibrated liposomes show some remarkable properties. Curvature induces membrane thinning and reduces the thermal expansivity of the membrane. In the inner monolayer the lipid head groups are very closely packed and dehydrated, and the lipids tails relatively disordered. The opposite packing effects are seen in the outer monolayer. In addition, we noticed an increased tendency of the lipid tails to backfold toward the interface in the outer monolayer. The distribution of lipids over the monolayers was found to be strongly temperature dependent. Higher temperatures favor more equally populated monolayers. Relaxation times of the lipid tails were found to increase with increasing curvature, with the lipid tails in the outer monolayer showing a significant slower dynamics compared to the lipid tails in the inner monolayer. In the binary systems there is a clear tendency toward partial transversal demixing of the two components, with especially DPPE enriched in the inner monolayer. This observation is in line with a static shape concept which dictates that inverted-cone shaped lipids such as DPPE and DLiPC would prefer the concave volume of the inner monolayer. However, our results for DLiPC show that another effect comes into play that is almost equally strong and provides a counter-acting driving force toward the outer, rather than the inner monolayer. This effect is the ability of the polyunsaturated tails of DLiPC to backfold, which is advantageous in the outer monolayer. We speculate that polyunsaturated lipids in biological membranes may play an important role in stabilizing both positive and negative regions of curvature.

摘要

平面双层膜中脂质的分子堆积细节已得到充分表征。然而,对于弯曲双层膜,可用数据很少。在本文中,我们使用粗粒度分子动力学模拟,研究了温度和膜组成对高曲率极限下(脂质体直径为15 - 20纳米)脂质体膜的结构和动力学性质的影响。对纯二棕榈酰磷脂酰胆碱(DPPC)脂质体以及DPPC与二棕榈酰磷脂酰乙醇胺(DPPE)或多不饱和二亚油酰磷脂酰胆碱(DLiPC)脂质的二元混合物进行了建模。我们特别注意脂质体的平衡,这需要脂质翻转,人工孔的临时插入有助于实现这一点。平衡后的脂质体表现出一些显著特性。曲率会导致膜变薄并降低膜的热膨胀系数。在内侧单层中,脂质头部基团紧密堆积且脱水,而脂质尾部相对无序。在外侧单层中观察到相反的堆积效应。此外,我们注意到外侧单层中脂质尾部向界面回折的趋势增加。发现脂质在单层之间的分布强烈依赖于温度。较高温度有利于单层中脂质分布更均匀。发现脂质尾部的弛豫时间随着曲率增加而增加,外侧单层中的脂质尾部动力学明显比内侧单层中的脂质尾部慢。在二元体系中,两种组分明显倾向于部分横向分离,特别是DPPE富集在内侧单层。这一观察结果与静态形状概念一致,该概念表明倒锥形脂质如DPPE和DLiPC会更倾向于内侧单层的凹形区域。然而,我们对DLiPC的结果表明,另一种几乎同样强烈的效应开始起作用,它提供了一个指向外侧而非内侧单层的反作用力。这种效应是DLiPC的多不饱和尾部回折的能力,这在外侧单层中是有利的。我们推测生物膜中的多不饱和脂质可能在稳定正曲率和负曲率区域方面发挥重要作用。

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