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环肽纳米管插入脂质双层的粗粒度分子动力学研究

Coarse-grained molecular dynamics study of cyclic peptide nanotube insertion into a lipid bilayer.

作者信息

Hwang Hyonseok

机构信息

Department of Chemistry and Institute for Molecular Science and Fusion Technology, Kangwon National University, Chuncheon, Kangwon 200-701, Republic of Korea.

出版信息

J Phys Chem A. 2009 Apr 23;113(16):4780-7. doi: 10.1021/jp8080657.

Abstract

Coarse-grained (CG) molecular dynamics (MD) simulations are performed to study the insertion of cyclic peptide nanotubes into cell membranes and to examine whether cyclic peptide nanotubes can function as an ion channel and thereby as an antibacterial agent. To do so, the two coarse-grained (CG) models for lipid molecules and for proteins developed by Marrink et al. (J. Phys. Chem. B 2004, 108, 750) and by Shih et al. (J. Phys. Chem. B 2006, 110, 3674), respectively, were extended and modified. These CG models were verified by performing CG MD and all-atom (AA) MD simulations for a cyclic peptide nanotube, 8 x cyclo[(-d-Ala-l-Glu-d-Ala-l-Gln-)2], in water and by comparing the results from the two simulations. Comparison between static and dynamic (water transport) properties obtained from both simulations shows good agreement. To study nanotube insertion, a CG cyclic peptide nanotube, 8 x cyclo[(-Trp-d-Leu-)4], was prepared above the surface of a CG DPPC lipid bilayer, restrained with constraints, and equilibrated, and then a series of CG MD simulations were carried out by lifting the constraints imposed on the nanotube. The CG MD simulations show that the cyclic peptide nanotube spontaneously inserts into and reorients inside the lipid bilayer. After insertion, the long axis of the cyclic peptide nanotube is aligned approximately perpendicular to the bilayer plane indicating that the nanotube can function as an ion channel and as an antibacterial agent. Tilt structures of the cyclic peptide nanotubes inside the lipid bilayer are found to be in agreement with experiment and earlier AA simulations. Lipid flip-flop, a migration of lipid molecules from one leaflet to the other leaflet of the lipid bilayer, is also observed from the CG MD simulations. Finally, the CG MD simulations reveal that a lipid headgroup can be inserted into the cyclic peptide nanotube. This process is confirmed by an AA MD simulation.

摘要

进行粗粒度(CG)分子动力学(MD)模拟,以研究环肽纳米管插入细胞膜的过程,并检验环肽纳米管是否可作为离子通道发挥作用,进而作为抗菌剂。为此,分别对Marrink等人(《物理化学杂志B》,2004年,第108卷,第750页)和Shih等人(《物理化学杂志B》,2006年,第110卷,第3674页)开发的脂质分子和蛋白质的两种粗粒度(CG)模型进行了扩展和修改。通过对环肽纳米管8×环[(-d-丙氨酸-l-谷氨酸-d-丙氨酸-l-谷氨酰胺-)2]在水中进行CG MD和全原子(AA)MD模拟,并比较两种模拟结果,对这些CG模型进行了验证。两种模拟得到的静态和动态(水传输)性质之间的比较显示出良好的一致性。为了研究纳米管插入,在CG DPPC脂质双层表面上方制备了一个CG环肽纳米管8×环[(-色氨酸-d-亮氨酸-)4],施加约束使其受限并达到平衡,然后通过解除对纳米管施加的约束进行了一系列CG MD模拟。CG MD模拟表明,环肽纳米管会自发插入脂质双层并在其中重新定向。插入后,环肽纳米管的长轴大致垂直于双层平面排列,这表明纳米管可作为离子通道和抗菌剂发挥作用。发现脂质双层内的环肽纳米管的倾斜结构与实验和早期的AA模拟结果一致。从CG MD模拟中还观察到了脂质翻转,即脂质分子从脂质双层的一个小叶迁移到另一个小叶。最后,CG MD模拟揭示脂质头部基团可插入环肽纳米管。这一过程通过AA MD模拟得到了证实。

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