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抗菌马蜂毒肽Polybia-MP1作用机制的选择性

Selectivity in the mechanism of action of antimicrobial mastoparan peptide Polybia-MP1.

作者信息

dos Santos Cabrera Marcia Perez, Costa Sabrina Thais Broggio, de Souza Bibiana Monson, Palma Mario Sérgio, Ruggiero José Roberto, Ruggiero Neto João

机构信息

Department of Physics, IBILCE, São Paulo State University-UNESP, R: Cristóvão Colombo, 2265, 15054-000, S. José do Rio Preto, SP, Brazil.

出版信息

Eur Biophys J. 2008 Jul;37(6):879-91. doi: 10.1007/s00249-008-0299-7. Epub 2008 Apr 15.

Abstract

Many potent antimicrobial peptides also present hemolytic activity, an undesired collateral effect for the therapeutic application. Unlike other mastoparan peptides, Polybia-MP1 (IDWKKLLDAAKQIL), obtained from the venom of the social wasp Polybia paulista, is highly selective of bacterial cells. The study of its mechanism of action demonstrated that it permeates vesicles at a greater rate of leakage on the anionic over the zwitterionic, impaired by the presence of cholesterol or cardiolipin; its lytic activity is characterized by a threshold peptide to lipid molar ratio that depends on the phospholipid composition of the vesicles. At these particular threshold concentrations, the apparent average pore number is distinctive between anionic and zwitterionic vesicles, suggesting that pores are similarly formed depending on the ionic character of the bilayer. To prospect the molecular reasons for the strengthened selectivity in Polybia-MP1 and its absence in Mastoparan-X, MD simulations were carried out. Both peptides presented amphipathic alpha-helical structures, as previously observed in Circular Dichroism spectra, with important differences in the extension and stability of the helix; their backbone solvation analysis also indicate a different profile, suggesting that the selectivity of Polybia-MP1 is a consequence of the distribution of the charged and polar residues along the peptide helix, and on how the solvent molecules orient themselves according to these electrostatic interactions. We suggest that the lack of hemolytic activity of Polybia-MP1 is due to the presence and position of Asp residues that enable the equilibrium of electrostatic interactions and favor the preference for the more hydrophilic environment.

摘要

许多强效抗菌肽也具有溶血活性,这是治疗应用中一种不良的附带效应。与其他马蜂毒肽不同,从群居黄蜂多比亚黄蜂(Polybia paulista)毒液中获得的多比亚-MP1(IDWKKLLDAAKQIL)对细菌细胞具有高度选择性。对其作用机制的研究表明,它使阴离子型囊泡的渗漏速率高于两性离子型囊泡,胆固醇或心磷脂的存在会损害这种作用;其裂解活性的特征是肽与脂质的摩尔比阈值取决于囊泡的磷脂组成。在这些特定的阈值浓度下,阴离子型和两性离子型囊泡的表观平均孔数不同,这表明孔的形成方式类似,取决于双层膜的离子特性。为了探究多比亚-MP1中选择性增强的分子原因以及马蜂毒肽-X中不存在这种选择性的原因,进行了分子动力学模拟。两种肽都呈现出两亲性α-螺旋结构,正如之前在圆二色光谱中观察到的那样,在螺旋的延伸和稳定性方面存在重要差异;它们的主链溶剂化分析也表明存在不同的情况,这表明多比亚-MP1的选择性是肽螺旋上带电和极性残基分布的结果,以及溶剂分子如何根据这些静电相互作用进行自我排列的结果。我们认为多比亚-MP1缺乏溶血活性是由于天冬氨酸残基的存在和位置,这些残基能够实现静电相互作用的平衡,并有利于对更亲水环境的偏好。

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