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抗菌肽的计算机辅助设计

In silico design of antimicrobial peptides.

作者信息

Maccari Giuseppe, Di Luca Mariagrazia, Nifosì Riccardo

机构信息

Center for Nanotechnology Innovation @NEST, Istituto Italiano di Tecnologia, Pisa, Italy.

出版信息

Methods Mol Biol. 2015;1268:195-219. doi: 10.1007/978-1-4939-2285-7_9.

Abstract

The rapid spread of drug-resistant pathogenic microbial strains has created an urgent need for the development of new anti-infective molecules, having different mechanism of action in comparison to existing drugs. Natural antimicrobial peptides (AMPs) represent a novel class of molecules with a broad spectrum of activity and a low rate in inducing bacterial resistance. In particular, linear alpha-helical cationic antimicrobial peptides are among the most widespread membrane-disruptive AMPs in nature, representing a particularly successful structural arrangement of the innate defense against microbes. However, until now, many AMPs have failed in clinical trials because of several drawbacks that strongly limit their applicability such as degradation, cytotoxicity, and high production cost. Thus, to overcome the limitations of native peptides, a rational in silico approach to AMPs design becomes a promising strategy that drastically reduce production costs and the time required for evaluation of activity and toxicity. This chapter focuses on the strategies and methods for de novo design of potentially active AMPs. In particular, statistical-based design strategies and MD methods for modelling AMPs are elucidated.

摘要

耐药致病微生物菌株的迅速传播迫切需要开发新的抗感染分子,这些分子与现有药物相比具有不同的作用机制。天然抗菌肽(AMPs)代表了一类新型分子,具有广泛的活性谱且诱导细菌耐药的比率较低。特别是,线性α-螺旋阳离子抗菌肽是自然界中最广泛存在的破坏膜的AMPs之一,代表了针对微生物的先天防御中一种特别成功的结构排列。然而,到目前为止,许多AMPs在临床试验中失败,原因是存在一些严重限制其适用性的缺点,如降解、细胞毒性和高生产成本。因此,为了克服天然肽的局限性,一种合理的基于计算机模拟的AMPs设计方法成为一种有前景的策略,可大幅降低生产成本以及评估活性和毒性所需的时间。本章重点介绍潜在活性AMPs从头设计的策略和方法。特别是,阐述了基于统计的设计策略和用于AMPs建模的分子动力学方法。

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