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脂质双层中胰岛淀粉样多肽I26P突变的自由能模拟

Free energy simulations of amylin I26P mutation in a lipid bilayer.

作者信息

Jalili Seifollah, Maleki Afsaneh, Akhavan Mojdeh, Najafi Bijan, Schofield Jeremy

机构信息

Department of Chemistry, K.N. Toosi University of Technology, P.O. Box 15875-4416, Tehran, Iran.

出版信息

Eur Biophys J. 2015 Feb;44(1-2):37-47. doi: 10.1007/s00249-014-0999-0. Epub 2014 Nov 27.

Abstract

The amylin peptide in a dioleoylphosphatidylcholine (DOPC) bilayer is studied using united atom molecular dynamics (MD) simulations. Dynamics and transport properties of the peptide and the phospholipid bilayer are investigated. The lateral diffusion of DOPC is in the order of 10(-8) cm(2) s(-1), which is in agreement with the experimental results. The order parameter and density profile for phospholipid molecules in the bilayer are calculated. The secondary structure of amylin peptide shows that the amino acids in two terminals are structureless and two α-helical segments in the peptide are connected through an unstructured link. This structure is similar to the experimental structure in the membrane-mimicking media. Free energy calculations of the Ile26 → Pro mutation in the amylin peptide are performed in the bilayer and in aqueous solution using molecular dynamics simulations and a thermodynamic cycle. It is shown that in the mutated peptide in aqueous solution, the α-helix structure changes to a 5-helix, whereas this configuration is preserved in the bilayer environment. It is interesting that the accessible surface area increases for hydrophobic residues in the bilayer and for hydrophilic residues in aqueous solution as the coupling parameter changes from 0 to 1. These results are significant to understanding the aggregation mechanism of human amylin monomers in membranes to the dimers, trimers, oligomers, and fibrils associated with the type 2 diabetes at the atomic level.

摘要

利用联合原子分子动力学(MD)模拟研究了二油酰磷脂酰胆碱(DOPC)双层膜中的胰岛淀粉样多肽。研究了该多肽和磷脂双层膜的动力学及传输性质。DOPC的横向扩散系数约为10(-8) cm(2) s(-1),与实验结果一致。计算了双层膜中磷脂分子的序参数和密度分布。胰岛淀粉样多肽的二级结构表明,其两端的氨基酸无结构,且多肽中的两个α-螺旋片段通过一个无结构的连接段相连。这种结构与在模拟膜介质中的实验结构相似。利用分子动力学模拟和热力学循环,在双层膜和水溶液中对胰岛淀粉样多肽中Ile26→Pro突变进行了自由能计算。结果表明,在水溶液中的突变多肽中,α-螺旋结构转变为5-螺旋,而在双层膜环境中该构型得以保留。有趣的是,随着耦合参数从0变为1,双层膜中疏水残基和亲水溶液中亲水残基的可及表面积均增加。这些结果对于在原子水平上理解人胰岛淀粉样多肽单体在膜中聚合成与2型糖尿病相关的二聚体、三聚体、寡聚体和原纤维的聚集机制具有重要意义。

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