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优化源自矛头蝮毒素-I的肽:探索p-BthW的抗菌潜力。

Optimizing Bothropstoxin-I-Derived Peptides: Exploring the Antibacterial Potential of p-BthW.

作者信息

Marinho Righetto Gabriela, Alves Santos-Filho Norival, Oliveira Catarin Nunes Letícia, André Camille, Souza Julia Medeiros, Andricopulo Adriano Defini, Martins Bispo Paulo José, Cilli Eduardo Maffud, Camargo Ilana Lopes Baratella da Cunha

机构信息

Laboratory of Molecular Epidemiology and Microbiology, Department of Physics and Interdisciplinary Science, University of Sao Paulo, 13563-120 São Carlos, Brazil.

Department of Biochemistry and Organic Chemistry, Institute of Chemistry, São Paulo State University, 14800-060 Araraquara, Brazil.

出版信息

ACS Omega. 2024 May 22;9(22):23662-23674. doi: 10.1021/acsomega.4c01303. eCollection 2024 Jun 4.

Abstract

Antimicrobial peptides are an emerging class of antibiotics that present a series of advantageous characteristics such as wide structural variety, broad spectrum of activity, and low propensity to select for resistance. They are found in all classes of life as defense molecules. A group of peptides derived from the protein Bothropstoxin-I has been previously studied as an alternative treatment against multi-drug-resistant bacteria. The peptide p-BthTX-I (sequence: KKYRYHLKPFCKK) and its homodimer, linked by disulfide oxidation through the residues of Cys11 and the serum degradation product [sequence: (KKYRYHLKPFC)], were evaluated and showed similar antimicrobial activity. In this study, we synthesized an analogue of p-BthTX-I that uses the strategy of Fmoc-Lys(Fmoc)-OH in the C-terminal region for dimerization and tryptophan for all aromatic amino acids to provide better membrane interactions. This analogue, named p-BthW, displayed potent antibacterial activity at lower concentrations and maintained the same hemolytic levels as the original molecule. Our assessment revealed that p-BthW has a quick in vitro bactericidal action and prolonged post-antibiotic effect, comparable to the action of polymyxin B. The mode of action of p-BthW seems to rely not only on membrane depolarization but also on necrosis-like effects, especially in Gram-negative bacteria. Overall, the remarkable results regarding the propensity to develop resistance reaffirmed the great potential of the developed molecule.

摘要

抗菌肽是一类新兴的抗生素,具有一系列有利特性,如结构多样、活性谱广以及产生耐药性的倾向低。它们作为防御分子存在于所有生命类别中。一组源自蛋白质Bothropstoxin-I的肽此前已被研究作为对抗多重耐药细菌的替代疗法。对肽p-BthTX-I(序列:KKYRYHLKPFCKK)及其通过Cys11残基的二硫键氧化连接的同二聚体以及血清降解产物[序列:(KKYRYHLKPFC)]进行了评估,结果显示它们具有相似的抗菌活性。在本研究中,我们合成了一种p-BthTX-I类似物,该类似物在C末端区域采用Fmoc-Lys(Fmoc)-OH策略进行二聚化,并将所有芳香族氨基酸替换为色氨酸,以提供更好的膜相互作用。这种类似物名为p-BthW,在较低浓度下显示出强大的抗菌活性,并且溶血水平与原始分子相同。我们的评估表明,p-BthW具有快速的体外杀菌作用和延长的抗生素后效应,与多粘菌素B的作用相当。p-BthW的作用模式似乎不仅依赖于膜去极化,还依赖于类似坏死的效应,尤其是在革兰氏阴性菌中。总体而言,关于产生耐药性倾向的显著结果再次证实了所开发分子的巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28c0/11154919/df9a1122b9cd/ao4c01303_0001.jpg

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