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Coarse-grained molecular dynamics of membrane semitoroidal pore formation in model lipid-peptide systems

机译:模型脂质肽系统中膜微型孔隙形成的粗粒分子动力学

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摘要

Transmembrane pores play an important role in various cell processes. However, the detailed structures of these pores and their influence on the membrane properties remain undetermined. We performed microsecond coarse-grained molecular dynamics simulations to study the interaction of cationic beta-structural peptides with multicomponent lipid bilayers consisting of two types of anionic (POPS, POPI) and two types of zwitterionic (POPE, POPC) lipids. The formation of semitoroidal pores was analyzed from a standpoint of self-organization of lipids and peptides. Our results showed that semitoroidal pores were mainly formed by POPI molecules with a strong negative charge. We found that peptide aggregation is a necessary step of pore formation; single peptide is unable to stabilize the semitoroidal pore. To characterize the influence of semitoroidal pores on membrane properties, we evaluated the bilayer thickness, the two-dimensional density maps of lipids, the deuterium order parameters, and the lateral diffusion coefficients of lipids. The pore formation induced perturbation of the phospholipid organization in membrane and facilitated the organization of zones with different electrostatic potential. (C) 2018 Elsevier Inc. All rights reserved.
机译:跨膜孔在各种细胞过程中起重要作用。然而,这些孔的详细结构及其对膜性能的影响仍未确定。我们进行了微秒粗粒化的分子动力学模拟,研究了阳离子β结构肽与多组分脂质双层的相互作用,其由两种阴离子(POPS,POPI)和两种类型的两种次代离子(POPE,POPC)脂质组成。从脂质和肽的自组织观点分断分析了糖分体孔的形成。我们的研究结果表明,糖线孔主要由POPI分子形成,具有强负电荷。我们发现肽聚集是孔形成的必要步骤;单肽不能稳定糖线孔隙。为了表征糖线孔对膜性能的影响,我们评估了双层厚度,脂质的二维密度图,氘阶参数和脂质的横向扩散系数。孔形成诱导磷脂组织在膜上的扰动,并促进了具有不同静电潜力的区域组织。 (c)2018年Elsevier Inc.保留所有权利。

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