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非天然疏水性氨基酸对抗菌肽 C18G 的功效和性质的影响。

Effect of Non-natural Hydrophobic Amino Acids on the Efficacy and Properties of the Antimicrobial Peptide C18G.

机构信息

Department of Chemistry and Biochemistry, Rowan University, 201 Mullica Hill Road, Glassboro, NJ, 08028, USA.

Department of Molecular and Cellular Biosciences, Rowan University, 201 Mullica Hill Road, Glassboro, NJ, 08028, USA.

出版信息

Probiotics Antimicrob Proteins. 2021 Apr;13(2):527-541. doi: 10.1007/s12602-020-09701-3.

Abstract

Antimicrobial peptides (AMPs) have been an area of great interest, due to the high selectivity of these molecules toward bacterial targets over host cells and the limited development of bacterial resistance to these molecules through evolution. The peptides are known to selectively bind to bacterial cell surfaces through electrostatic interactions, and subsequently, the peptides insert into the cell membrane and cause local disruptions of membrane integrity leading to cell death. Previous experiments showed that replacing the Leu residues in the AMP C18G with other naturally occurring hydrophobic residues resulted in side-chain-dependent activities. This work extends the investigation to non-natural hydrophobic amino acids and the effect on peptide activity. Minimal inhibitory concentration (MIC) results demonstrated that amino acid substitutions containing long flexible carbon chains maintained or increased antimicrobial activity compared to natural analogues. In solution, the peptide showed aggregation only with the most hydrophobic non-natural amino acid substitutions. Binding assays using Trp fluorescence confirm a binding preference for anionic lipids while quenching experiments demonstrated that the more hydrophobic peptides are more deeply buried in the anionic lipid bilayers compared to the zwitterionic bilayers. The most effective peptides at killing bacteria were also those which showed some level of disruption of bacterial membranes; however, one peptide sequence exhibited very strong activity and very low levels of red blood cell hemolysis, yielding a promising target for future development.

摘要

抗菌肽 (AMPs) 一直是研究的热点,这是因为这些分子对细菌靶标具有很高的选择性,而对宿主细胞的选择性较低,并且这些分子在进化过程中细菌对其产生耐药性的可能性有限。这些肽已知通过静电相互作用选择性地结合到细菌细胞表面,随后,肽插入细胞膜并导致局部破坏膜完整性,从而导致细胞死亡。以前的实验表明,用其他天然存在的疏水性残基替代 AMP C18G 中的 Leu 残基会导致侧链依赖性活性。这项工作将研究扩展到非天然疏水性氨基酸及其对肽活性的影响。最低抑菌浓度 (MIC) 结果表明,与天然类似物相比,含有长柔性碳链的氨基酸取代物保持或增加了抗菌活性。在溶液中,只有与疏水性最强的非天然氨基酸取代物结合时,肽才会发生聚集。使用色氨酸荧光的结合测定证实了对阴离子脂质的结合偏好,而猝灭实验表明,与两性离子脂质双层相比,疏水性更强的肽更深地埋在阴离子脂质双层中。在杀死细菌方面最有效的肽也显示出一定程度的细菌膜破坏;然而,一种肽序列表现出非常强的活性和非常低的红细胞溶血水平,为未来的开发提供了一个有希望的目标。

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