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理想两亲性溶细胞LiKj(i = 2j)肽对界面和脂质的结构、取向及亲和力

Structure, orientation and affinity for interfaces and lipids of ideally amphipathic lytic LiKj(i=2j) peptides.

作者信息

Castano S, Desbat B, Laguerre M, Dufourcq J

机构信息

Centre de Recherche Paul Pascal, CNRS, Avenue A. Schweitzer, 33600, Pessac, France.

出版信息

Biochim Biophys Acta. 1999 Jan 12;1416(1-2):176-94. doi: 10.1016/s0005-2736(98)00220-x.

Abstract

The behavior of lytic ideally amphipathic peptides of generic composition LiKj(i=2j) and named LKn, n=i+j, is investigated in situ by the monolayer technique combined with the recently developed polarization modulation IR spectroscopy (PMIRRAS). A change in the secondary structure occurs versus peptide length. Peptides longer than 12 residues fold into alpha-helices at interfaces as expected from their design, while enough shorter peptides, from 9 down to 5 residues, form intermolecular antiparallel beta-sheets. Analysis of experimental and calculated PMIRRAS spectra in the amide I and II regions show that peptides are flat oriented at the interfaces. Structures and orientation are preserved whatever the nature of the interface, air/water or DMPC monolayer, and the lateral pressure. Peptide partition constants, KaffPi, are estimated from isobar surface increases of DMPC monolayers. They strongly increase when Pi decreases from 30 mN/m to 8 mN/m and they vary with peptide length with an optimum for 12 residues. This non-monotonous dependence fits with data obtained in bilayers and follows the hemolytic activity of the peptides. Lipid perturbations due to peptide insertion essentially detected on the PO4- and CO bands indicate disorder of the lipid head groups. Lysis induced on membranes by such peptides is proposed to first result from their flat asymmetric insertion.

摘要

通过结合最近开发的偏振调制红外光谱(PMIRRAS)的单层技术,对通用组成LiKj(i = 2j)且命名为LKn(n = i + j)的溶细胞理想两亲性肽的行为进行了原位研究。二级结构随肽长度发生变化。超过12个残基的肽在界面处折叠成α-螺旋,这与其设计预期一致,而足够短的肽,从9个残基到5个残基,形成分子间反平行β-折叠。对酰胺I和II区域的实验和计算PMIRRAS光谱分析表明,肽在界面处呈平面取向。无论界面的性质(空气/水或DMPC单层)以及侧向压力如何,结构和取向都得以保留。肽分配常数KaffPi是根据DMPC单层的等压表面增加来估计的。当Pi从30 mN/m降至8 mN/m时,它们会大幅增加,并且随肽长度变化,在12个残基时达到最佳值。这种非单调依赖性与在双层中获得的数据相符,并与肽的溶血活性一致。由于肽插入导致的脂质扰动主要在PO4 - 和CO带检测到,表明脂质头部基团无序。这类肽在膜上诱导的裂解被认为首先是由于它们的平面不对称插入。

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