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混合表面活性剂双层中非对称和波纹的全原子和粗粒模拟:交错和链内熵。

Asymmetry and Rippling in Mixed Surfactant Bilayers from All-Atom and Coarse-Grained Simulations: Interdigitation and Per Chain Entropy†.

机构信息

Department of Chemistry, IIT Jodhpur, Jodhpur 342037, Rajasthan, India.

出版信息

J Phys Chem B. 2020 Jul 23;124(29):6420-6436. doi: 10.1021/acs.jpcb.0c03761. Epub 2020 Jul 14.

Abstract

Understanding lateral organizations of self-assembled bilayers is crucial to gain a control on functionally relevant topologies. We study self-assembled bilayers composed of a surfactant, behenyl trimethyl ammonium chloride (BTMAC), a cosurfactant, stearyl alcohol (SA), at a ratio of 2:1 in the presence of water at 283 K employing subsequent all-atom (AA) and coarse-grained (CG) molecular dynamics simulations. Differences in initial configurations lead to the formation of bilayers at ripple or square phases or interdigitated gel phases of varying trans-leaflet asymmetry. The AA ripple and gel phases are reproduced well at the CG level using bonded potentials from Boltzmann inversion of AA canonical sampling and nonbonded potentials from MARTINI. Inhomogeneous populations of disordered chains with higher per chain configurational entropy and tilt result in rippling stabilized by periodic hydrophobic energy barrier and strong interdigitation. Order parameters of the asymmetric bilayers are sufficiently coupled to the per chain entropies at both levels of resolutions to serve as a reflector of the per chain configurational entropy inaccessible by experiments. Thus, trans-bilayer asymmetry may be a controlling parameter to induce rippling in a bilayer of industrial importance. This work will be useful for future investigation on domain-associated transport and signaling in biomembranes at a low temperature.

摘要

理解自组装双层的横向组织对于获得对功能相关拓扑结构的控制至关重要。我们在 283 K 下研究了由表面活性剂十六烷基三甲基氯化铵 (BTMAC) 和助表面活性剂硬脂醇 (SA) 以 2:1 的比例在水中自组装而成的双层,采用后续的全原子 (AA) 和粗粒 (CG) 分子动力学模拟。初始构型的差异导致在波纹或方形相或具有不同跨叶不对称性的交错凝胶相中形成双层。使用从 AA 正则采样的 Boltzmann 反演得到的键合势和 MARTINI 的非键合势,可以在 CG 水平上很好地再现 AA 的波纹和凝胶相。无序链的不均匀分布,具有更高的链构象熵和倾斜,导致由周期性疏水性能量势垒和强交错稳定的波纹化。不对称双层的序参数与两种分辨率水平的链熵充分耦合,作为实验无法获得的链构象熵的反映。因此,跨双层不对称性可能是诱导具有工业重要性的双层波纹化的控制参数。这项工作将有助于未来在低温下对生物膜中与域相关的运输和信号转导进行研究。

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