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首页> 外文期刊>Biochemistry >Roles of Salt and Conformation in the Biological and Physicochemical Behavior of Protegrin-1 and Designed Analogues:Correlation of Antimicrobial,Hemolytic,and Lipid Bilayer-Perturbing Activities
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Roles of Salt and Conformation in the Biological and Physicochemical Behavior of Protegrin-1 and Designed Analogues:Correlation of Antimicrobial,Hemolytic,and Lipid Bilayer-Perturbing Activities

机译:盐和构象在Protegrin-1及其设计类似物的生物学和物理化学行为中的作用:抗微生物,溶血和脂质双层干扰活性的相关性

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Protegrins are short (16-18 residues) cationic peptides from porcine leukocytes that display potent,broad-spectrum antimicrobial activity.Protegrin-1 (PG-1),one of five natural homologues,adopts a rigid beta-hairpin structure that is stabilized by two disulfide bonds.We have previously employed the principles of beta-hairpin design to develop PG-1 variants that lack disulfide bonds but nevertheless display potent antimicrobial activity [Lai,J.R.,Huck,B.R.,Weisblum,B.,and Gellman,S.H.(2002) Biochemistry 41,12835-12842.].The activity of these disulfide-free variants,however,is attenuated in the presence of salt,and the activity of PG-1 itself is not.Salt-induced inactivation of host-defense peptides,such as human defensins,is thought to be important in some pathological situations (e.g.,cystic fibrosis),and the variation in salt-sensitivity among our PG-1 analogues offers a model system with which to explore the origins of these salt effects.We find that the variations in antimicrobial activity among our peptides are correlated with the folding propensities of these molecules and with the extent to which the peptides induce leakage of contents from synthetic liposomes.Comparable correlations were observed between folding and hemolytic activity.The extent to which added salt reduces antimicrobial activity parallels salt effects on vesicle perturbation,which suggests that the biological effects of high salt concentrations arise from modulation of peptide-membrane interactions.
机译:Protegrins是来自猪白细胞的短阳离子肽(16-18个残基),具有强大的广谱抗菌活性。Protegrin-1(PG-1)是五个天然同源物之一,采用了一种刚性的β-发夹结构,可通过两个二硫键。我们以前曾采用β-发夹设计原理来开发PG-1变体,这些变体缺乏二硫键,但仍显示出强大的抗菌活性[Lai,JR,Huck,BR,Weisblum,B。,和Gellman,SH( 2002)Biochemistry 41,12835-12842。]。但是,这些无二硫键变异体的活性在盐的存在下会减弱,而PG-1本身的活性则不会。盐诱导的宿主防御肽失活,例如人类防御素,在某些病理情况(例如,囊性纤维化)中被认为是重要的,而我们的PG-1类似物之间盐敏感性的差异提供了一个模型系统,用以探索这些盐作用的起源。我们发现抗菌素a的变化我们的肽之间的选择性与这些分子的折叠倾向以及与肽诱导合成脂质体内容物泄漏的程度有关。在折叠和溶血活性之间观察到可比的相关性。添加盐的程度降低了抗微生物活性,与盐平行对小泡扰动的影响,这表明高盐浓度的生物效应是由肽-膜相互作用的调节引起的。

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