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具有 PRRP 为中心轴的高治疗指数抗菌肽的设计、生物学特性和抗菌机制。

Design, biological characteristics, and antibacterial mechanism of high therapeutic index antimicrobial peptides with PRRP as central axis.

机构信息

College of Animal Medicine, Jilin Agricultural University, Xincheng Street No. 2888, Changchun, 130118, PR China.

College of Life Sciences, Jilin Agricultural University, Xincheng Street No. 2888, Changchun, 130118, PR China.

出版信息

J Antibiot (Tokyo). 2024 Mar;77(3):170-181. doi: 10.1038/s41429-023-00697-w. Epub 2024 Jan 17.

Abstract

As the important components of biological innate immunity, antimicrobial peptides (AMPs) were found in a variety of organisms including insects, plants, animals, bacteria, fungi, etc. However, high hemolytic activity, high toxicity, and poor stability of natural AMPs hinder serious their application as therapeutic agents. To overcome these problems, in this study we use PRRP as a central axis, and peptides were designed based on the sequence template XRRXXRXPRRPXRXXRRX-NH, where X represents a hydrophobic amino acid like Phe (F), Ile (I), Val (V), and Leu (L). The designed peptides LR18, FR18, and IR18 showed effective antimicrobial activity against some Gram-positive bacteria and Gram-negative bacteria, low cytotoxicity to mammalian cells, and had a tendency to form α-helical structures in membrane-mimetic environments. Among them, peptide LR18 (X: L) showed the highest geometric mean average treatment index (GM = 42.7) against Gram-negative bacteria, and FR18 (X: L) showed the highest GM (22.86) against Gram-positive bacteria. LR18 and FR18 also showed better salt, temperature, pH, and trypsin stability. LR18 and FR18 exert their antimicrobial effects mainly through destroying bacteria cell membrane. Briefly, peptide LR18 and FR18 have the potential to serve as a therapeutic agent to reduce antibiotic resistance owing to its high therapeutic index and great stability.

摘要

作为生物固有免疫的重要组成部分,抗菌肽 (AMPs) 存在于各种生物中,包括昆虫、植物、动物、细菌、真菌等。然而,天然 AMPs 的溶血活性高、毒性高、稳定性差,严重阻碍了其作为治疗剂的应用。为了克服这些问题,在本研究中我们以 PRRP 为中心轴,根据序列模板 XRRXXRXPRRPXRXXRRX-NH 设计了肽,其中 X 代表疏水性氨基酸,如 Phe (F)、Ile (I)、Val (V) 和 Leu (L)。设计的肽 LR18、FR18 和 IR18 对一些革兰氏阳性菌和革兰氏阴性菌具有有效的抗菌活性,对哺乳动物细胞的细胞毒性低,并在模拟膜环境中具有形成 α-螺旋结构的趋势。其中,肽 LR18 (X: L) 对革兰氏阴性菌的平均几何治疗指数 (GM = 42.7) 最高,而 FR18 (X: L) 对革兰氏阳性菌的 GM 最高 (22.86)。LR18 和 FR18 还表现出更好的盐、温度、pH 和胰蛋白酶稳定性。LR18 和 FR18 主要通过破坏细菌细胞膜发挥其抗菌作用。简而言之,肽 LR18 和 FR18 由于其高治疗指数和良好的稳定性,具有作为减少抗生素耐药性的治疗剂的潜力。

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