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超短全碳氢 stapled α-螺旋两亲分子作为一种有效且稳定的抗菌化合物。

Ultrashort All-Hydrocarbon Stapled α-Helix Amphiphile as a Potent and Stable Antimicrobial Compound.

机构信息

Laboratory of Molecular Nutrition and Immunity. College of Animal Science and Technology, Northeast Agricultural University, Harbin, Heilongjiang 150030, P. R. China.

出版信息

J Med Chem. 2023 Aug 24;66(16):11414-11427. doi: 10.1021/acs.jmedchem.3c00856. Epub 2023 Aug 2.

Abstract

The ravaging effect of drug-resistant bacteria has heightened the need for the development of membrane-soluble antimicrobial peptides (AMPs). However, their potential for clinical use is hindered by issues such as poor biocompatibility, salt sensitivity, and proteolytic lability. In this study, a series of ultrashort stapled cyclization heptapeptides were obtained by inserting all-hydrocarbon staples. StRRL with the highest therapeutic index (TI = 36.3) was selected after evaluating its antibacterial and toxic activity. Furthermore, stRRL demonstrated exceptional performance in high-protease and high-salt environments, making it an effective weapon against bacteria like in a mouse peritonitis-sepsis model. The membrane lytic mechanism of stRRL, which operates from outside to inside, gives it a low drug-resistant tendency. This suggests that stRRL has the potential to replace antibiotics as a powerful candidate in tackling bacterial infection. In conclusion, the ultrashort all-hydrocarbon stapled antimicrobial amphiphiles inaugurated a novel entrance to the advancements of highly stable peptide compounds.

摘要

耐药菌的肆虐加剧了人们对膜溶性抗菌肽(AMPs)开发的需求。然而,由于其生物相容性差、盐敏感性和蛋白水解不稳定性等问题,其临床应用受到限制。在这项研究中,通过插入全碳氢化合物 staples 得到了一系列超短 stapled 环化七肽。在评估其抗菌和毒性活性后,选择了具有最高治疗指数(TI = 36.3)的 StRRL。此外,StRRL 在高蛋白酶和高盐环境中表现出色,使其成为治疗腹膜炎-败血症模型中 等细菌的有效武器。StRRL 的膜裂解机制从外向内作用,使其具有较低的耐药倾向。这表明,StRRL 有可能替代抗生素,成为治疗细菌感染的有力候选药物。总之,这种超短全碳氢 stapled 抗菌两亲物为高度稳定的肽化合物的发展开辟了一个新途径。

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