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在水性和膜状环境中短杆菌肽片段构象灵活性的分子动力学模拟

Molecular dynamics simulation of conformational flexibility of alamethicin fragments in aqueous and membranous environment.

作者信息

Kothekar V, Mahajan K, Raha K, Gupta D

机构信息

Department of Biophysics, All India Institute of Medical Sciences, New Delhi, India.

出版信息

J Biomol Struct Dyn. 1996 Dec;14(3):303-16. doi: 10.1080/07391102.1996.10508126.

Abstract

We present here results on molecular dynamics (MD) simulation on two fragments of channel forming antibiotic peptide Alamethicin, containing isoamino butyric acid (Aib). Simulations are carried out in aqueous and membranous environment in a bilayer of 39 molecules of Dimyristoyl phosphatidyl choline (DMPC). The peptides Boc-Pro-Aib-Ala-Aib-OBzl (Alam 1) and Boc-Leu-Aib-Pro-OBzl (Alam 2) were simulated from their crystallographic coordinates. The bilayers were built from two different conformations (A and B) of DMPC reported in crystal data. The P-N dipoles were arranged hexagonally with surface area per lipid molecule 66.5 A degrees 2 and P-P separation across the bilayer 34 A degrees. They were hydrated by 28.6 and 25.5 water molecules per DMPC molecule. Simulations are done using AMBER 4.0 package in constant number volume temperature (NVT) condition for 100 pico seconds (ps) in aqueous environment and 250 ps of equilibrated bilayer. Geometric parameters of lipids as: bilayer thickness, order parameter of the chains, transfraction of chain torsional angles were monitored. We also monitored geometric parameters of the peptides as backbone torsional angles, distances amongst C alpha atoms, angles between C alpha atoms, movement of center of gravity (CG) along and perpendicular to bilayer normal. We find that membrane bilayer is slightly disturbed due to the presence of peptides. In case of alam 2 in water angles phi 1 and phi 3 showed larger variation in water compared to same in the bilayer. The peptide conformation is more stable in DMPC bilayer. However the peptides showed movement along and perpendicular to bilayer normal. This we believe is due to hydrophobic nature of these peptides.

摘要

我们在此展示了关于形成通道的抗生素肽阿拉米辛(Alamethicin)两个片段的分子动力学(MD)模拟结果,这两个片段含有异氨基丁酸(Aib)。模拟在由39个二肉豆蔻酰磷脂酰胆碱(DMPC)分子组成的双层膜的水性和膜状环境中进行。肽Boc - Pro - Aib - Ala - Aib - OBzl(Alam 1)和Boc - Leu - Aib - Pro - OBzl(Alam 2)根据其晶体学坐标进行模拟。双层膜由晶体数据中报道的DMPC的两种不同构象(A和B)构建而成。P - N偶极呈六边形排列,每个脂质分子的表面积为66.5 Ų,双层膜上P - P间距为34 Å。每个DMPC分子被28.6和25.5个水分子水化。在恒定数量 - 体积 - 温度(NVT)条件下,使用AMBER 4.0软件包在水性环境中进行100皮秒(ps)的模拟,并对平衡的双层膜进行250 ps的模拟。监测脂质的几何参数,如双层膜厚度、链的序参数、链扭转角的反式分数。我们还监测肽的几何参数,如主链扭转角、Cα原子之间的距离、Cα原子之间的角度、重心(CG)沿双层膜法线方向和垂直于双层膜法线方向的移动。我们发现由于肽的存在,膜双层受到轻微干扰。在水中的alam 2情况下,与双层膜中的情况相比,角度φ1和φ3在水中显示出更大的变化。肽的构象在DMPC双层膜中更稳定。然而,肽沿双层膜法线方向和垂直于双层膜法线方向都有移动。我们认为这是由于这些肽的疏水性。

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