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电荷对α-螺旋两栖类抗菌肽抗菌活性的影响。

Effect of charge on the antimicrobial activity of alpha-helical amphibian antimicrobial peptide.

作者信息

Islam Md Monirul, Asif Fahim, Zaman Sabbir Uz, Arnab Md Kamrul Hasan, Rahman Md Mostafizur, Hasan Moynul

机构信息

Department of Pharmacy, Noakhali Science and Technology University, Noakhali 3814, Bangladesh.

Department of Pharmacy, Jagannath University, Dhaka 1100, Bangladesh.

出版信息

Curr Res Microb Sci. 2023 Feb 25;4:100182. doi: 10.1016/j.crmicr.2023.100182. eCollection 2023.

Abstract

Antibiotic resistance is a severe threat to the world's public health, which has increased the need to discover novel antibacterial molecules. In this context, an emerging class of naturally occurring short peptide molecules called antimicrobial peptides (AMPs) has been considered potent antibacterial agents. Amphibians are one of the significant sources of AMPs, which have been extensively studied for the last few decades. Most amphibian AMPs are cationic, and several of these cationic AMPs adopt a well-defined alpha-helical structure in the presence of bacterial membranes. These cationic alpha-helical amphibian AMPs (CαAMPs) can selectively and preferentially bind with the negatively charged surfaces of Gram-positive and Gram-negative bacteria through electrostatic interaction, considered the main reason for their antibacterial activities. Here, we categorized these CαAMPs according to their charge, and to calculate the charge density; we divided the charge of each peptide by its corresponding length. To investigate the effect of charge among these categories, charge or charge density under each charge category was plotted against their corresponding minimum inhibitory concentration (MIC). Moreover, the effect of charge modification of some CαAMPs under specific charge categories in the context of MIC and hemolysis was also discussed. The information in this review will help us understand the antibacterial activity of accessible CαAMPs depending on each charge category across species. Additionally, this study suggests that designing novel functional antibacterial agents requires charge modification optimally.

摘要

抗生素耐药性对全球公共卫生构成严重威胁,这增加了发现新型抗菌分子的需求。在此背景下,一类新出现的天然存在的短肽分子,即抗菌肽(AMPs),被认为是有效的抗菌剂。两栖动物是抗菌肽的重要来源之一,在过去几十年中受到了广泛研究。大多数两栖动物抗菌肽是阳离子型的,其中一些阳离子抗菌肽在细菌膜存在的情况下会形成明确的α-螺旋结构。这些阳离子α-螺旋两栖动物抗菌肽(CαAMPs)可以通过静电相互作用选择性地、优先地与革兰氏阳性菌和革兰氏阴性菌带负电荷的表面结合,这被认为是它们具有抗菌活性的主要原因。在这里,我们根据这些CαAMPs的电荷对其进行分类,并为了计算电荷密度,将每个肽的电荷除以其相应的长度。为了研究这些类别中电荷的影响,将每个电荷类别下的电荷或电荷密度与其相应的最低抑菌浓度(MIC)进行了绘图。此外,还讨论了在特定电荷类别下一些CαAMPs的电荷修饰在MIC和溶血方面的影响。这篇综述中的信息将帮助我们了解不同物种中可获得的CαAMPs根据每个电荷类别所具有的抗菌活性。此外,这项研究表明,设计新型功能性抗菌剂需要对电荷进行优化修饰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3fc/10011193/6dc9ac49355e/ga1.jpg

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