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Computational studies of protegrin antimicrobial peptides: a review.

机译:Protegrin抗菌肽的计算研究:综述。

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Antimicrobial peptides (AMPs) are small, naturally occurring peptides that exhibit strong antibacterial properties generally believed to be a result of selective bacterial membrane disruption. As a result, there has been significant interest in the development of therapeutic antibiotics based on AMPs; however, the poor understanding of the fundamental mechanism of action of these peptides has largely hampered such efforts. We present a summary of computational and theoretical investigations of protegrin, a particularly potent peptide that is both an excellent model for the mechanism of action of AMPs and a promising therapeutic candidate. Experimental investigations have shed light on many of the key steps in the action of protegrin: protegrin monomers are known to dimerize in various lipid environments; protegrin peptides interact strongly with lipid bilayer membranes, particularly anionic lipids; protegrins have been shown to form pores in lipid bilayers, which results in uncontrolled ion transport and may be a key factor in bacterial death. In this work, we present a comprehensive review of the computational and theoretical studies that have complemented and extended the information obtained from experimental work with protegrins, as well as a brief survey of the experimental biophysical studies that are most pertinent to such computational work. We show that a consistent, mechanistic description of the bactericidal mechanism of action of protegrins is emerging, and briefly outline areas where the current understanding is deficient. We hope that the research reviewed herein offers compelling evidence of the benefits of computational investigations of protegrins and other AMPs, as well as providing a useful guide to future work in this area.
机译:抗菌肽(AMPs)是小的天然肽,具有很强的抗菌特性,通常被认为是选择性细菌膜破坏的结果。结果,人们对基于AMPs的治疗性抗生素的开发产生了极大的兴趣。然而,对这些肽的基本作用机理的了解不足很大程度上阻碍了这种努力。我们提供了protegrin的计算和理论研究的总结,protegrin是一种特别有效的肽,既是AMPs作用机制的极好模型,又是有前途的治疗候选物。实验研究揭示了protegrin作用的许多关键步骤:已知protegrin单体可在各种脂质环境中发生二聚化; protegrin肽与脂质双层膜特别是阴离子脂质强烈相互作用。已经证明,蛋白凝集素在脂质双层中形成孔,这导致不受控制的离子传输,并且可能是细菌死亡的关键因素。在这项工作中,我们对计算和理论研究进行了全面回顾,以补充和扩展了从蛋白中获得的从实验工作中获得的信息,并简要介绍了与此类计算工作最相关的实验生物物理研究。我们表明,对蛋白质的杀菌作用机理的一致的机械描述正在出现,并简要概述了当前了解不足的领域。我们希望本文所审查的研究能够提供有力的证据证明蛋白质和其他AMP的计算研究的益处,并为该领域的未来工作提供有用的指南。

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