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β-发夹抗菌肽的膜破坏能力与构象和活性的相关性:一项31P和1H核磁共振研究

Membrane-disruptive abilities of beta-hairpin antimicrobial peptides correlate with conformation and activity: a 31P and 1H NMR study.

作者信息

Mani Rajeswari, Waring Alan J, Lehrer Robert I, Hong Mei

机构信息

Department of Chemistry, Iowa State University, Ames, IA 50011, USA.

出版信息

Biochim Biophys Acta. 2005 Oct 1;1716(1):11-8. doi: 10.1016/j.bbamem.2005.08.008.

Abstract

The membrane interaction and solution conformation of two mutants of the beta-hairpin antimicrobial peptide, protegrin-1 (PG-1), are investigated to understand the structural determinants of antimicrobial potency. One mutant, [A(6,8,13,15)] PG-1, does not have the two disulfide bonds in wild-type PG-1, while the other, [Delta(4,18) G10] PG-1, has only half the number of cationic residues. 31P solid-state NMR lineshapes of uniaxially aligned membranes indicate that the membrane disorder induced by the three peptides decreases in the order of PG-1 > [Delta(4,18) G10] PG-1>>[A(6,8,13,15)] PG-1. Solution NMR studies of the two mutant peptides indicate that [Delta(4,18) G10] PG-1 preserves the beta-hairpin fold of the wild-type peptide while [A(6,8,13,15)] PG-1 adopts a random coil conformation. These NMR results correlate well with the known activities of these peptides. Thus, for this class of peptides, the presence of a beta-hairpin fold is more essential than the number of cationic charges for antimicrobial activity. This study indicates that 31P NMR lineshapes of uniaxially aligned membranes are well correlated with antimicrobial activity, and can be used as a diagnostic tool to understand the peptide-lipid interactions of these antimicrobial peptides.

摘要

为了了解抗菌效力的结构决定因素,对β-发夹抗菌肽protegrin-1(PG-1)的两个突变体的膜相互作用和溶液构象进行了研究。一个突变体[A(6,8,13,15)]PG-1在野生型PG-1中没有两个二硫键,而另一个突变体[Delta(4,18)G10]PG-1的阳离子残基数量只有一半。单轴排列膜的31P固态NMR线形表明,三种肽诱导的膜无序程度按PG-1>[Delta(4,18)G10]PG-1>>[A(6,8,13,15)]PG-1的顺序降低。对这两个突变肽的溶液NMR研究表明,[Delta(4,18)G10]PG-1保留了野生型肽的β-发夹结构,而[A(6,8,13,15)]PG-1采用无规卷曲构象。这些NMR结果与这些肽的已知活性密切相关。因此,对于这类肽,β-发夹结构的存在对抗菌活性比阳离子电荷的数量更重要。这项研究表明,单轴排列膜的31P NMR线形与抗菌活性密切相关,可作为一种诊断工具来了解这些抗菌肽的肽-脂质相互作用。

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