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含色氨酸的广谱阳离子抗菌八肽的从头设计

De Novo Design of Tryptophan Containing Broad-Spectrum Cationic Antimicrobial Octapeptides.

作者信息

Sarkar Tanumoy, Vignesh S R, Kumar Sundaravadivelu Pradeep, Thummer Rajkumar P, Satpati Priyadarshi, Chatterjee Sunanda

机构信息

Department of Chemistry, Indian Institute of Technology Guwahati, Guwahati, Assam, 781039, India.

Department of Bioscience and Bioengineering, Indian Institute of Technology Guwahati, Guwahati, Assam, 781039, India.

出版信息

ChemMedChem. 2025 Jan 14;20(2):e202400566. doi: 10.1002/cmdc.202400566. Epub 2024 Nov 13.

Abstract

With the advent of antibiotic resistant organisms, development of alternate classes of molecules other than antibiotics to combat microbial infections, have become extremely important. In this context, antimicrobial peptides have taken center stage of antimicrobial therapeutic research. In this work, we have reported two cationic antimicrobial octapeptides WRL and LWRF, with broad spectrum antimicrobial activities against several strains of ESKAPE pathogens. Both the peptides were membrane associative and induced microbial cell death through membranolysis, being selective towards microbial membranes over mammalian membranes. The AMPs were unstructured in water, adopting partial helical conformation in the presence of microbial membrane mimics. Electrostatic interaction formed the primary basis of peptide-membrane interactions. WRL was more potent, salt tolerant and faster acting of the two AMPs, owing to the presence of two tryptophan residues against that of one in LWRF. Increased tryptophan number in WRL enhanced its membrane association ability, resulting in higher antimicrobial potency but lower selectivity. This experimental and computational work, established that an optimum number of tryptophan residues and their position was critical for obtaining high antimicrobial potency and selectivity simultaneously in the designed cationic AMPs. Understanding the peptide membrane interactions in atomistic details can lead to development of better antimicrobial therapeutics in future.

摘要

随着抗生素耐药性微生物的出现,开发除抗生素之外的其他类型分子来对抗微生物感染变得极其重要。在此背景下,抗菌肽已成为抗菌治疗研究的核心。在这项工作中,我们报道了两种阳离子抗菌八肽WRL和LWRF,它们对几种ESKAPE病原体菌株具有广谱抗菌活性。这两种肽都与膜结合,并通过膜溶解诱导微生物细胞死亡,对微生物膜的选择性高于哺乳动物膜。这些抗菌肽在水中是无结构的,在存在微生物膜模拟物的情况下会形成部分螺旋构象。静电相互作用构成了肽与膜相互作用的主要基础。WRL在这两种抗菌肽中更有效、耐盐且作用更快,这是因为WRL中有两个色氨酸残基,而LWRF中只有一个。WRL中色氨酸数量的增加增强了其与膜的结合能力,导致更高的抗菌效力但更低的选择性。这项实验和计算工作表明,在设计的阳离子抗菌肽中,色氨酸残基的最佳数量及其位置对于同时获得高抗菌效力和选择性至关重要。从原子细节上理解肽与膜的相互作用可能会在未来促成更好的抗菌治疗药物的开发。

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