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盐度和温度对环肽在水中自组装的影响:分子动力学研究。

Influence of salt and temperature on the self-assembly of cyclic peptides in water: a molecular dynamics study.

机构信息

Department of Chemistry, Indian Institute of Technology, Guwahati Assam, 781039, India.

出版信息

Phys Chem Chem Phys. 2023 Feb 15;25(7):5406-5422. doi: 10.1039/d2cp05160e.

Abstract

It is found in the literature that cyclic peptides (CPs) are able to self-assemble in water to form cyclic peptide nanotubes (CPNTs) and are used extensively in the field of nanotechnology. Several factors influence the formation and stability of these nanotubes in water. However, an extensive study of the contribution of several important factors is still lacking. The purpose of this study is to explore the effect of temperature and salt (NaCl) on the association tendency of CPs. Furthermore, the self-association behavior of CPs in aqueous solutions at various temperatures is also thoroughly discussed. Cyclo-[(Asp-D-Leu-Lys-D-Leu)] is considered for this study and a series of classical molecular dynamics (MD) simulations at three different temperatures, 280 K, 300 K, and 320 K, both in pure water and in NaCl solutions of different concentrations are carried out. The calculations of radial distribution functions, preferential interaction parameters, cluster formation and hydrogen bonding properties suggest a strong influence of NaCl concentration on the association propensity of CPs. Low NaCl concentration hinders CP association while high NaCl concentration facilitates the association of CPs. Besides this, the association of CPs is found to be enhanced at low temperature. Furthermore, the thermodynamics of CP association is predominantly found to be enthalpy driven in both the presence and absence of salt. No crossover between enthalpy and entropy in CP association is observed. In addition, the MM-GBSA method is used to investigate the binding free energies of the CP rings that self-assembled to form nanotube like structures at all three temperatures.

摘要

文献中发现,环肽(CPs)能够在水中自组装形成环肽纳米管(CPNTs),并广泛应用于纳米技术领域。有几个因素会影响这些纳米管在水中的形成和稳定性。然而,对于几个重要因素的综合影响仍缺乏广泛的研究。本研究旨在探讨温度和盐(NaCl)对 CPs 聚集倾向的影响。此外,还深入讨论了 CPs 在不同温度下水溶液中的自组装行为。本研究选用环-[(Asp-D-Leu-Lys-D-Leu)],并在纯水中以及不同浓度的 NaCl 溶液中,在三个不同温度(280 K、300 K 和 320 K)下进行了一系列经典分子动力学(MD)模拟计算。径向分布函数、优先相互作用参数、簇形成和氢键性质的计算表明,NaCl 浓度对 CPs 的聚集倾向有很强的影响。低浓度的 NaCl 会阻碍 CPs 的聚集,而高浓度的 NaCl 则有利于 CPs 的聚集。此外,还发现 CPs 的聚集在低温下增强。此外,在有盐和无盐的情况下,CP 聚集的热力学主要是由焓驱动的。在 CP 聚集中没有观察到焓和熵之间的交叉。此外,还使用 MM-GBSA 方法研究了 CP 环在三个温度下自组装形成纳米管样结构的结合自由能。

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