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Mechanisms of antimicrobial peptide action and resistance.

机译:抗菌肽作用和耐药机制。

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Antimicrobial peptides have been isolated and characterized from tissues and organisms representing virtually every kingdom and phylum, ranging from prokaryotes to humans. Yet, recurrent structural and functional themes in mechanisms of action and resistance are observed among peptides of widely diverse source and composition. Biochemical distinctions among the peptides themselves, target versus host cells, and the microenvironments in which these counterparts convene, likely provide for varying degrees of selective toxicity among diverse antimicrobial peptide types. Moreover, many antimicrobial peptides employ sophisticated and dynamic mechanisms of action to effect rapid and potent activities consistent with their likely roles in antimicrobial host defense. In balance, successful microbial pathogens have evolved multifaceted and effective countermeasures to avoid exposure to and subvert mechanisms of antimicrobial peptides. A clearer recognition of these opposing themes will significantly advance ourunderstanding of how antimicrobial peptides function in defense against infection. Furthermore, this understanding may provide new models and strategies for developing novel antimicrobial agents, that may also augment immunity, restore potency or amplify the mechanisms of conventional antibiotics, and minimize antimicrobial resistance mechanisms among pathogens. From these perspectives, the intention of this review is to illustrate the contemporary structural and functional themes among mechanisms of antimicrobial peptide action and resistance.
机译:已经从代表几乎每个王国和门的组织和生物体中分离并鉴定了抗菌肽,从原核生物到人类。然而,在来源和组成广泛不同的肽中观察到了作用和抗性机制中的周期性结构和功能主题。肽本身,靶细胞与宿主细胞以及这些对应物所处的微环境之间的生化差异可能会在各种抗菌肽类型之间提供不同程度的选择性毒性。而且,许多抗菌肽采用复杂而动态的作用机制来实现快速有效的活性,这与其在抗菌宿主防御中的可能作用相一致。总而言之,成功的微生物病原体已经发展出多种有效的对策,以避免暴露于和破坏抗微生物肽的机制。对这些相反主题的更清晰认识将大大提高我们对抗菌肽如何在防御感染中起作用的理解。此外,这种理解可以为开发新型抗微生物剂提供新的模型和策略,它们还可以增强免疫力,恢复效力或扩大常规抗生素的作用机制,并使病原体之间的抗药性机制最小化。从这些角度出发,本综述旨在说明抗菌肽作用和耐药机制中的当代结构和功能主题。

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