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三种非天然抗菌肽的膜渗透作用的异同。

Similarities and differences for membranotropic action of three unnatural antimicrobial peptides.

机构信息

Physical Chemistry I, Technical University of Dortmund, Dortmund, Germany.

Department of Chemical Sciences, University of Naples Federico II, Naples, Italy.

出版信息

J Pept Sci. 2020 Aug;26(8):e3270. doi: 10.1002/psc.3270. Epub 2020 Jun 18.

Abstract

Previously, we described the design and synthesis of three nine-residue AMPs, P9Nal(SS), P9Trp(SS), and P9Nal(SR), showing high stability in serum and broad spectrum antimicrobial activity. The peptides P9Trp(SS) and P9Nal(SR) differ from P9Nal(SS) for the replacement of the two 2Nal residues with Trp residues and for the replacement of the two Cys (StBu) with Cys (tBu) residues, respectively. These changes led to peptides with a lower hydrophobicity respect to the P9Nal(SS). Interestingly, the three peptides have very similar activity against Gram-negative bacteria. Instead, they exhibit a significant difference towards Gram-positive bacteria, being P9Nal(SS) the most active. In order to evaluate the impact of amino acids substitution on membranotropic activity and rationalize the observed effects in vivo, here, we report the detailed biophysical characterization of the interaction between P9Nal(SR) and P9Trp(SS) and liposomes by combining differential scanning calorimetry, circular dichroism, and fluorescence spectroscopy. The comparison with the results for the previously characterized P9Nal(SS) peptide reveals similarities and differences on the interaction process and perturbation activities. It was found that the three peptides can penetrate at different extent inside the bilayer upon changing their conformation and inducing lipid domains formation, revealing that the formation of lipid domains is fundamental for the activity against Gram-negative bacteria. On the contrary, the dissimilar activity against Gram-positive bacteria well correlate with the different affinity of peptides for the lipoteichoic acid, a component selectively present in the cell wall of Gram-positive bacteria.

摘要

先前,我们描述了三种九肽 AMPs(P9Nal(SS)、P9Trp(SS)和 P9Nal(SR))的设计与合成,这些肽具有在血清中高度稳定性和广谱抗菌活性。与 P9Nal(SS)相比,肽 P9Trp(SS)和 P9Nal(SR)分别用色氨酸残基替换了两个 2Nal 残基,用 Cys(tBu)替换了两个 Cys(StBu)。这些变化导致肽的疏水性降低。有趣的是,这三种肽对革兰氏阴性菌的活性非常相似。然而,它们对革兰氏阳性菌表现出显著差异,其中 P9Nal(SS)最为活跃。为了评估氨基酸取代对膜透性活性的影响,并从体内角度合理推断观察到的效应,我们在这里报告了 P9Nal(SR)和 P9Trp(SS)与脂质体之间相互作用的详细生物物理特性,结合了差示扫描量热法、圆二色性和荧光光谱。与之前表征的 P9Nal(SS)肽的结果进行比较,揭示了相互作用过程和扰动活性的异同。发现三种肽可以在改变构象并诱导脂质体形成的情况下不同程度地穿透双层,表明脂质体的形成对于对抗革兰氏阴性菌的活性是至关重要的。相反,针对革兰氏阳性菌的不同活性与肽对脂磷壁酸的亲和力差异密切相关,脂磷壁酸是革兰氏阳性菌细胞壁中选择性存在的一种成分。

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