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膜平面内的中子散射:短杆菌肽孔道结构

Neutron scattering in the plane of membranes: structure of alamethicin pores.

作者信息

He K, Ludtke S J, Worcester D L, Huang H W

机构信息

Physics Department, Rice University, Houston, Texas 77005-1892, USA.

出版信息

Biophys J. 1996 Jun;70(6):2659-66. doi: 10.1016/S0006-3495(96)79835-1.

Abstract

A technique of neutron in-plane scattering for studying the structures of peptide pores in membranes is described. Alamethicin in the inserted state was prepared and undeuterated and deuterated dilauroyl phosphatidylcholine (DLPC) hydrated with D2O or H2O. Neutron in-plane scattering showed a strong dependence on deuteration, clearly indicating that water is a part of the high-order structure of inserted alamethicin. The data are consistent with the simple barrel-stave model originally proposed by Baumann and Mueller. The theoretical curves computed with this model at four different deuteration conditions agree with the data in all cases. Both the diameter of the water pore and the effective outside diameter of the channel are determined accurately. Alamethicin forms pores in a narrow range of size. In a given sample condition, > 70% of the peptide forms pores of n and n +/- 1 monomers. The pore size varies with hydration and with lipid. In DLPC, the pores are made of n = 8-9 monomers, with a water pore approximately 18 A in diameter and with an effective outside diameter of approximately 40 A. In diphytanoyl phosphatidylcholine, the pores are made of n approximately 11 monomers, with a water pore approximately 26 A in diameter, with an effective outside diameter of approximately 50 A.

摘要

描述了一种用于研究膜中肽孔结构的中子面内散射技术。制备了处于插入状态的阿拉米辛,以及用D2O或H2O水合的未氘代和氘代二月桂酰磷脂酰胆碱(DLPC)。中子面内散射显示出对氘代的强烈依赖性,清楚地表明水是插入的阿拉米辛高阶结构的一部分。这些数据与鲍曼和米勒最初提出的简单桶板模型一致。用该模型在四种不同氘代条件下计算的理论曲线在所有情况下均与数据相符。水孔的直径和通道的有效外径都被精确确定。阿拉米辛在狭窄的尺寸范围内形成孔。在给定的样品条件下,>70%的肽形成n和n +/- 1个单体的孔。孔径随水合作用和脂质而变化。在DLPC中,孔由n = 8 - 9个单体组成,水孔直径约为18 Å,有效外径约为40 Å。在二植烷酰磷脂酰胆碱中,孔由n约为11个单体组成,水孔直径约为26 Å,有效外径约为50 Å。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5bba/1225245/73f1e0619e5d/biophysj00048-0198-a.jpg

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