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环状阳离子抗菌肽在脂质双层中的构象与相互作用。

Conformation and interaction of the cyclic cationic antimicrobial peptides in lipid bilayers.

作者信息

Jelokhani-Niaraki M, Prenner E J, Kay C M, McElhaney R N, Hodges R S

机构信息

Department of Chemistry, Wilfrid Laurier University, Waterloo, Ontario, Canada N2L 3C5.

出版信息

J Pept Res. 2002 Jul;60(1):23-36. doi: 10.1034/j.1399-3011.2002.21003.x.

Abstract

To investigate the role of peptide-membrane interactions in the biological activity of cyclic cationic peptides, the conformations and interactions of four membrane-active antimicrobial peptides [based on Gramicidin S (GS)] were examined in neutral and negatively charged micelles and phospholipid vesicles, using CD and fluorescence spectroscopy and ultracentrifugation techniques. Moreover, the effects of these peptides on the release of entrapped fluorescent dye from unilamellar vesicles of phosphatidylcholine (PC) and phosphatidylethanolamine/phosphatidylglycerol (PE/PG) were studied. The cyclic peptides include GS10 [Cyclo(VKLdYP)2], GS12 [Cyclo(VKLKdYPKVKLdYP)], GS14 [Cyclo(VKLKVdYPLKVKLdYP)] and [d-Lys]4GS14 [Cyclo(VKLdKVdYPLKVKLdYP)] (underlined residues are d-amino acids), were different in their ring size, structure and amphipathicity, and covered a broad spectrum of hemolytic and antimicrobial activities. Interaction of the peptides with the zwitterionic PC and negatively charged PE/PG vesicles were distinct from each other. The hydrophobic interaction seems to be the dominant factor in the hemolytic activity of the peptides, as well as their interaction with the PC vesicles. A combination of electrostatic and hydrophobic interactions of the peptides induces aggregation and fusion in PE/PG vesicles with different propensities in the order: [d-Lys]4GS14 > GS14 > GS12 > GS10. GS10 and GS14 are apparently located in the deeper levels of the membrane interfaces and closer to the hydrophobic core of the bilayers, whereas GS12 and [d-Lys]4GS14 reside closer to the outer boundary of the interface. Because of differing modes of interaction of the cyclic cationic peptides with lipid bilayers, the mechanism of their biological activity (and its relation to peptide-lipid interaction) proved to be versatile and complex, and dependent on the biophysical properties of both the peptides and membranes.

摘要

为了研究肽 - 膜相互作用在环阳离子肽生物活性中的作用,使用圆二色光谱(CD)、荧光光谱和超速离心技术,研究了四种基于短杆菌肽S(GS)的膜活性抗菌肽在中性和带负电荷的胶束以及磷脂囊泡中的构象和相互作用。此外,还研究了这些肽对磷脂酰胆碱(PC)单层囊泡和磷脂酰乙醇胺/磷脂酰甘油(PE/PG)单层囊泡中包封的荧光染料释放的影响。环肽包括GS10 [环(VKLdYP)2]、GS12 [环(VKLKdYPKVKLdYP)]、GS14 [环(VKLKVdYPLKVKLdYP)]和[d - Lys]4GS14 [环(VKLdKVdYPLKVKLdYP)](下划线残基为d - 氨基酸),它们在环大小、结构和两亲性方面存在差异,并且具有广泛的溶血和抗菌活性。肽与两性离子PC囊泡和带负电荷的PE/PG囊泡的相互作用彼此不同。疏水相互作用似乎是肽溶血活性及其与PC囊泡相互作用的主要因素。肽的静电和疏水相互作用共同诱导PE/PG囊泡发生聚集和融合,其倾向顺序为:[d - Lys]4GS14 > GS14 > GS12 > GS10。GS10和GS14显然位于膜界面的较深层,更靠近双层膜核心的疏水区域,而GS12和[d - Lys]4GS14更靠近界面的外边界。由于环阳离子肽与脂质双层的相互作用方式不同,其生物活性机制(及其与肽 - 脂质相互作用的关系)被证明是多样且复杂的,并且取决于肽和膜的生物物理性质。

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