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鉴定来自粘菌素组的环脂肽假去甲粘菌素A抗菌活性相关的分子决定因素。

Identification of the Molecular Determinants Involved in Antimicrobial Activity of Pseudodesmin A, a Cyclic Lipopeptide From the Viscosin Group.

作者信息

De Vleeschouwer Matthias, Van Kersavond Tim, Verleysen Yentl, Sinnaeve Davy, Coenye Tom, Martins José C, Madder Annemieke

机构信息

Organic and Biomimetic Chemistry Research Group, Department of Organic and Macromolecular Chemistry, Ghent University, Ghent, Belgium.

NMR and Structure Analysis Research Group, Department of Organic and Macromolecular Chemistry, Ghent University, Ghent, Belgium.

出版信息

Front Microbiol. 2020 Apr 21;11:646. doi: 10.3389/fmicb.2020.00646. eCollection 2020.

Abstract

Cyclic lipo(depsi)peptides (CLiPs) from constitute a class of natural products involved in a broad range of biological functions for their producers. They also display interesting antimicrobial potential including activity against Gram-positive bacteria. Literature has indicated that these compounds can induce membrane permeabilization, possibly through pore-formation, leading to the general view that the cellular membrane constitutes the primary target in their mode of action. In support of this view, we previously demonstrated that the enantiomer of pseudodesmin A, a member of the viscosin group of CLiPs, shows identical activity against a test panel of six Gram-positive bacterial strains. Here, a previously developed total organic synthesis route is used and partly adapted to generate 20 novel pseudodesmin A analogs in an effort to derive links between molecular constitution, structure and activity. From these, the importance of a macrocycle closed by an ester bond as well as a critical length of β-OH fatty acid chain capping the N-terminus is conclusively demonstrated, providing further evidence for the importance of peptide-membrane interactions in the mode of action. Moreover, an alanine scan is used to unearth the contribution of specific amino acid residues to biological activity. Subsequent interpretation in terms of a structural model describing the location and orientation of pseudodesmin A in a membrane environment, allows first insight in the peptide-membrane interactions involved. The biological screening also identified residue positions that appear less sensitive to conservative modifications, allowing the introduction of a non-perturbing tryptophan residue which will pave the way toward biophysical studies using fluorescence spectroscopy.

摘要

来自[具体来源未提及]的环脂(去甲)肽(CLiPs)是一类天然产物,对其产生菌具有广泛的生物学功能。它们还展现出有趣的抗菌潜力,包括对革兰氏阳性菌的活性。文献表明,这些化合物可能通过形成孔道诱导膜通透性增加,这使得人们普遍认为细胞膜是其作用方式的主要靶点。为支持这一观点,我们之前证明了假去甲丝氨酸A(CLiPs中粘杆菌素组的一员)的对映体对一组六种革兰氏阳性细菌菌株的测试显示出相同的活性。在此,使用了先前开发的全有机合成路线并部分进行了调整,以生成20种新型假去甲丝氨酸A类似物,试图找出分子组成、结构与活性之间的联系。由此,最终证明了由酯键封闭的大环以及封端N端的β-OH脂肪酸链的临界长度的重要性,为肽-膜相互作用在作用方式中的重要性提供了进一步证据。此外,通过丙氨酸扫描来揭示特定氨基酸残基对生物活性的贡献。随后根据描述假去甲丝氨酸A在膜环境中的位置和取向的结构模型进行解释,首次深入了解了所涉及的肽-膜相互作用。生物学筛选还确定了对保守修饰不太敏感的残基位置,这使得能够引入一个无干扰的色氨酸残基,为使用荧光光谱进行生物物理研究铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80f0/7187754/ff3980da187a/fmicb-11-00646-g003.jpg

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