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抗菌蝎毒液衍生肽的膜结合和破坏机制的分子动力学模拟。

Molecular dynamics simulation of the membrane binding and disruption mechanisms by antimicrobial scorpion venom-derived peptides.

机构信息

a Instituto de Ciencias Físicas , Universidad Nacional Autónoma de México , Cuernavaca , Morelos 62210 , México.

b Departamento de Medicina Molecular y Bioprocesos , Instituto de Biotecnología, Universidad Nacional Autónoma de México , Cuernavaca , Morelos 62210 , México.

出版信息

J Biomol Struct Dyn. 2018 Jun;36(8):2070-2084. doi: 10.1080/07391102.2017.1341340. Epub 2017 Jun 22.

Abstract

Pandinin 2 (Pin2) is an alpha-helical polycationic peptide, identified and characterized from venom of the African scorpion Pandinus imperator with high antimicrobial activity against Gram-positive bacteria and less active against Gram-negative bacteria, however it has demonstrated strong hemolytic activity against sheep red blood cells. In the chemically synthesized Pin2GVG analog, the GVG motif grants it low hemolytic activity while keeping its antimicrobial activity. In this work, we performed 12 μs all-atom molecular dynamics simulation of the antimicrobial peptides (AMPs) Pin2 and Pin2GVG to explore their adsorption mechanism and the role of their constituent amino acid residues when interacting with pure POPC and pure POPG membrane bilayers. Starting from an α-helical conformation, both AMPs are attracted at different rates to the POPC and POPG bilayer surfaces due to the electrostatic interaction between the positively charged amino acid residues and the charged moieties of the membranes. Since POPG is an anionic membrane, the PAMs adhesion is stronger to the POPG membrane than to the POPC membrane and they are stabilized more rapidly. This study reveals that, before the insertion begins, Pin2 and Pin2GVG remained partially folded in the POPC surface during the first 300 and 600 ns, respectively, while they are mostly unfolded in the POPG surface during most of the simulation time. The unfolded structures provide for a large number of intermolecular hydrogen bonds and stronger electrostatic interactions with the POPG surface. The results show that the aromatic residues at the N-terminus of Pin2 initiate the insertion process in both POPC and POPG bilayers. As for Pin2GVG in POPC the C-terminus residues seem to initiate the insertion process while in POPG this process seems to be slowed down due to a strong electrostatic attraction. The membrane conformational effects upon PAMs binding are measured in terms of the area per lipid and the contact surface area. Several replicas of the systems lead to the same observations.

摘要

Pandinin 2(Pin2)是一种α-螺旋多阳离子肽,从非洲蝎子 Pandinus imperator 的毒液中被鉴定和表征出来,对革兰氏阳性菌具有高抗菌活性,对革兰氏阴性菌的活性较低,但对绵羊红细胞具有很强的溶血活性。在化学合成的 Pin2GVG 类似物中,GVG 基序赋予其低溶血活性,同时保持其抗菌活性。在这项工作中,我们对抗菌肽(AMPs)Pin2 和 Pin2GVG 进行了 12 μs 的全原子分子动力学模拟,以探索它们的吸附机制以及它们的组成氨基酸残基在与纯 POPC 和纯 POPG 膜双层相互作用时的作用。从α-螺旋构象开始,由于带正电荷的氨基酸残基与膜的带电部分之间的静电相互作用,两种 AMP 都以不同的速率被吸引到 POPC 和 POPG 双层表面。由于 POPG 是一种阴离子膜,PAMs 与 POPG 膜的粘附比与 POPC 膜更强,并且它们更快地稳定下来。这项研究表明,在插入开始之前,Pin2 和 Pin2GVG 在最初的 300 和 600 ns 期间分别在 POPC 表面部分折叠,而在大部分模拟时间内它们在 POPG 表面大部分展开。展开的结构提供了大量的分子间氢键和与 POPG 表面更强的静电相互作用。结果表明,Pin2 的 N 端芳香族残基启动了在 POPC 和 POPG 双层中的插入过程。对于 Pin2GVG 在 POPC 中,C 端残基似乎启动了插入过程,而在 POPG 中,由于静电吸引,这个过程似乎会减慢。通过测量脂质的面积和接触表面积来衡量 PAMs 结合对膜构象的影响。系统的几个副本得出了相同的观察结果。

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