具有独特作用机制的新型抗菌药物Microcin J25的结构、生物合成、生物活性及应用前景

Qingchun Ji , Bixia Zhou , Tong Shen , Tianyue Jiang , Cheng Cheng , Bingfang He
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引用次数: 1

摘要

传统抗菌药物的过度使用和误用导致其疗效减弱,并出现致病菌耐药性。因此,制药行业对抗菌肽(AMPs)等替代方案的兴趣日益浓厚。微霉素J25 (mcj25)因其对多种病原菌的有效抑制作用而受到广泛关注。其独特的轮烷结构提供了对极热,pH和蛋白酶降解的卓越稳定性,包括凝乳胰蛋白酶,胰蛋白酶和胃蛋白酶。鉴于其卓越的稳定性和多样的生物活性,我们旨在概述mcj25的物理化学性质,其抗菌活性的机制和关键功能残基。此外,我们还总结了mcj25异源表达的最新策略及其潜在的医学用途和其他应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The lasso structure, biosynthesis, bioactivities and potential applications of Microcin J25: A novel antibacterial agent with unique mechanisms

The lasso structure, biosynthesis, bioactivities and potential applications of Microcin J25: A novel antibacterial agent with unique mechanisms

The overuse and misuse of traditional antimicrobial drugs have led to their weakened effectiveness and the emergence of pathogenic bacterial resistance. Consequently, there has been growing interest in alternative options such as antimicrobial peptides (AMPs) in the pharmaceutical industry. Microcin J25 (MccJ25) has gained significant attention for its potent inhibitory effect on a diverse range of pathogens. Its unique rotaxane structure provides exceptional stability against extreme thermal, pH, and protease degradation, including chymotrypsin, trypsin, and pepsin. Given its remarkable stability and diverse bioactivity, we aim to provide an overview of the physicochemical properties, the mechanism underlying its antimicrobial activity, and the critical functional residues of MccJ25. Additionally, we have summarized the latest strategies for the heterologous expression of MccJ25, and its potential medical use and other applications.

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