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手性调控提高抗菌肽类似物的选择性。

Helicity Modulation Improves the Selectivity of Antimicrobial Peptoids.

机构信息

Department of Biomedical Science, Graduate School, and Department of Cellular and Molecular Medicine, School of Medicine, Chosun University, Gwangju 61452, Republic of Korea.

Department of Chemistry, University of Oslo, Oslo 0315, Norway.

出版信息

ACS Infect Dis. 2020 Oct 9;6(10):2732-2744. doi: 10.1021/acsinfecdis.0c00356. Epub 2020 Sep 15.

Abstract

The modulation of conformational flexibility in antimicrobial peptides (AMPs) has been investigated as a strategy to improve their efficacy against bacterial pathogens while reducing their toxicity. Here, we synthesized a library of helicity-modulated antimicrobial peptoids by the position-specific incorporation of helix-inducing monomers. The peptoids displayed minimal variations in hydrophobicity, which permitted the specific assessment of the effect of conformational differences on antimicrobial activity and selectivity. Among the moderately helical peptoids, the most dramatic increase in selectivity was observed in peptoid , providing more than a 20-fold increase compared to fully helical peptoid . Peptoid had potent broad-spectrum antimicrobial activity that included clinically isolated multi-drug-resistant pathogens. Compared to pexiganan AMP, showed superior metabolic stability, which could potentially reduce the dosage needed, alleviating toxicity. Dye-uptake assays and high-resolution imaging revealed that the antimicrobial activity of was, as with many AMPs, mainly due to membrane disruption. However, the high selectivity of reflected its unique conformational characteristics, with differential interactions between bacterial and erythrocyte membranes. Our results suggest a way to distinguish different membrane compositions solely by helicity modulation, thereby improving the selectivity toward bacterial cells with the maintenance of potent and broad-spectrum activity.

摘要

抗菌肽(AMPs)构象灵活性的调节已被研究作为一种策略,以提高其对抗细菌病原体的功效,同时降低其毒性。在这里,我们通过位置特异性引入螺旋诱导单体合成了一个螺旋调制抗菌肽类库。肽类的疏水性变化很小,这允许对构象差异对抗菌活性和选择性的影响进行特异性评估。在中度螺旋肽类中,在肽类 中观察到选择性的最大增加,与完全螺旋肽类 相比,增加了 20 多倍。肽类 具有强大的广谱抗菌活性,包括临床分离的多药耐药病原体。与 pexiganan AMP 相比, 具有更高的代谢稳定性,这可能降低所需剂量,减轻毒性。染料摄取实验和高分辨率成像显示, 与许多 AMP 一样,其抗菌活性主要归因于膜破坏。然而, 的高选择性反映了其独特的构象特征,与细菌和红细胞膜之间的差异相互作用。我们的结果表明,仅通过螺旋调制就可以区分不同的膜组成,从而提高对具有强大广谱活性的细菌细胞的选择性。

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