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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Recombinant expression, antimicrobial activity and mechanism of action of tritrpticin analogs containing fluoro-tryptophan residues
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Recombinant expression, antimicrobial activity and mechanism of action of tritrpticin analogs containing fluoro-tryptophan residues

机译:含氟色氨酸残基的曲美霉素类似物的重组表达,抗菌活性和作用机理

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The increase in antibiotic-resistant bacterial infections has prompted significant academic research into new-therapeutic agents targeted against these pathogens. Antimicrobial peptides (AMPS) appear as promising candidates, due their potent antimicrobial activity and their ubiquitous presence in almost all organisms. Tritrpticin is a member of this family of peptides and has been shown to exert a strong antimicrobial activity against several bacterial strains. Tritrpticin's main structural characteristic is the presence of three consecutive Trp residues at the center of the peptide. These residues play an important role in the activity of tritrpticin against Escherichia In this work, a recombinant version of tritrpticin was produced in E. coli using calmodulin as a fusion protein expression tag to overcome the toxicity of the peptide. When used in combination with glyphosate, an inhibitor of the endogenous synthesis of aromatic amino acids, this expression system allowed for the incorporation of fluorinated Trp analogs at very high levels (>90%). The antimicrobial activity of the 4-, 5- and 6-fluoro-Trp-containing tritrpticins against E. coli was as strong as the activity of the native peptide. Similarly, the tritrpticin analogs exhibited comparable abilities to perturb and permeabilize synthetic lipid bilayers as well as the outer and inner membrane of E. coll. Furthermore, the use of F-19 NMR spectroscopy established that each individual fluoro-Trp residue interacts differently with SDS micelles, supporting the idea that each Trp in the original tritrpticin plays a different role in the perturbing/permeabilizing activity of the peptide. Moreover, our work demonstrates that the use of fluoro-Trp in solvent perturbation F-19 NMR experiments provides detailed site-specific information on the insertion of the Trp residues in biological membrane mimetics. This article is part of a Special Issue entitled: Antimicrobial peptides edited by Karl Lohner and Kai Hilpert. (C) 2015 Elsevier B.V. All rights reserved.
机译:抗生素抗药性细菌感染的增加促使针对这些病原体的新型治疗剂进行了重要的学术研究。抗菌肽(AMPS)由于其强大的抗菌活性和在几乎所有生物中的普遍存在而显得很有希望。 Tritrpticin是该肽家族的成员,已显示出对多种细菌菌株具有强大的抗菌活性。 Tritrpticin的主要结构特征是在肽中心存在三个连续的Trp残基。这些残基在曲美霉素抗埃希氏菌的活性中起重要作用。在这项工作中,使用钙调蛋白作为融合蛋白表达标签在大肠杆菌中生产了曲美霉素的重组形式,以克服该肽的毒性。当与草甘膦(一种芳香族氨基酸的内源性合成抑制剂)结合使用时,该表达系统允许以非常高的水平(> 90%)掺入氟化的Trp类似物。含4-,5-和6-氟-Trp的三苯甲酸酯类抗大肠杆菌的活性与天然肽的活性一样强。类似地,三苯乙酸类似物表现出相当的扰动和透化合成脂质双层以及大肠杆菌外膜和内膜的能力。此外,使用F-19 NMR光谱法可以确定每个单独的氟-Trp残基与SDS胶束的相互作用不同,从而支持以下想法:原始三苯乙草胺中的每个Trp在肽的扰动/透化活性中发挥不同的作用。此外,我们的工作表明,在溶剂扰动F-19 NMR实验中使用氟-Trp可提供有关在生物膜模拟物中插入Trp残基的详细的现场特定信息。本文是由卡尔·洛纳(Karl Lohner)和凯·希尔普特(Kai Hilpert)编辑的题为:抗菌肽的特刊的一部分。 (C)2015 Elsevier B.V.保留所有权利。

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