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一种14聚体模型两亲性肽的膜拓扑结构:一项固态核磁共振波谱研究。

Membrane topology of a 14-mer model amphipathic peptide: a solid-state NMR spectroscopy study.

作者信息

Ouellet Marise, Doucet Jean-Daniel, Voyer Normand, Auger Michèle

机构信息

Département de Chimie, Centre de Recherche sur la Fonction, la Structure et l'Ingénierie des Protéines, Centre de Recherche en Sciences et Ingénierie des Macromolécules, Université Laval, Québec, Québec, Canada G1K 7P4.

出版信息

Biochemistry. 2007 Jun 5;46(22):6597-606. doi: 10.1021/bi0620151. Epub 2007 May 8.

Abstract

We have investigated the interaction between a synthetic amphipathic 14-mer peptide and model membranes by solid-state NMR. The 14-mer peptide is composed of leucines and phenylalanines modified by the addition of crown ethers and forms a helical amphipathic structure in solution and bound to lipid membranes. To shed light on its membrane topology, 31P, 2H, 15N solid-state NMR experiments have been performed on the 14-mer peptide in interaction with mechanically oriented bilayers of dilauroylphosphatidylcholine (DLPC), dimyristoylphosphatidylcholine (DMPC), and dipalmitoylphosphatidylcholine (DPPC). The 31P, 2H, and 15N NMR results indicate that the 14-mer peptide remains at the surface of the DLPC, DMPC, and DPPC bilayers stacked between glass plates and perturbs the lipid orientation relative to the magnetic field direction. Its membrane topology is similar in DLPC and DMPC bilayers, whereas the peptide seems to be more deeply inserted in DPPC bilayers, as revealed by the greater orientational and motional disorder of the DPPC lipid headgroup and acyl chains. 15N{31P} rotational echo double resonance experiments have also been used to measure the intermolecular dipole-dipole interaction between the 14-mer peptide and the phospholipid headgroup of DMPC multilamellar vesicles, and the results indicate that the 14-mer peptide is in contact with the polar region of the DMPC lipids. On the basis of these studies, the mechanism of membrane perturbation of the 14-mer peptide is associated to the induction of a positive curvature strain induced by the peptide lying on the bilayer surface and seems to be independent of the bilayer hydrophobic thickness.

摘要

我们通过固态核磁共振研究了一种合成的两亲性14聚体肽与模型膜之间的相互作用。该14聚体肽由添加冠醚修饰的亮氨酸和苯丙氨酸组成,在溶液中形成螺旋两亲结构并与脂质膜结合。为了阐明其膜拓扑结构,我们对与机械取向的二月桂酰磷脂酰胆碱(DLPC)、二肉豆蔻酰磷脂酰胆碱(DMPC)和二棕榈酰磷脂酰胆碱(DPPC)双层相互作用的14聚体肽进行了³¹P、²H、¹⁵N固态核磁共振实验。³¹P、²H和¹⁵N核磁共振结果表明,14聚体肽保留在夹在玻璃板之间的DLPC、DMPC和DPPC双层膜表面,并扰乱了脂质相对于磁场方向的取向。其膜拓扑结构在DLPC和DMPC双层膜中相似,而肽似乎更深入地插入DPPC双层膜中,这由DPPC脂质头部基团和酰基链更大的取向和运动无序所揭示。¹⁵N{³¹P}旋转回波双共振实验也被用于测量14聚体肽与DMPC多层囊泡的磷脂头部基团之间的分子间偶极 - 偶极相互作用,结果表明14聚体肽与DMPC脂质的极性区域接触。基于这些研究,14聚体肽的膜扰动机制与位于双层膜表面的肽诱导的正曲率应变有关,并且似乎与双层膜的疏水厚度无关。

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