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表皮生长因子受体跨膜结构域:流体双层膜中的肽-肽相互作用

The EGF receptor transmembrane domain: peptide-peptide interactions in fluid bilayer membranes.

作者信息

Morrow M R, Grant C W

机构信息

Department of Physics and Physical Oceanography, Memorial University of Newfoundland, St. John's, Newfoundland A1B 3X7, Canada.

出版信息

Biophys J. 2000 Oct;79(4):2024-32. doi: 10.1016/S0006-3495(00)76450-2.

Abstract

A peptide containing the transmembrane domain of the human EGF receptor was studied in fluid lipid bilayers for insight into receptor tyrosine kinase lateral associations in cell membranes. The peptide comprised the 23-amino acid hydrophobic segment thought to span the membrane (Ile(622) to Met(644) of the EGF receptor), plus the first 10 amino acids of the receptor's cytoplasmic domain (Arg(645) to Thr(654)). Probes for solid-state NMR spectroscopy were incorporated by deuteration of the methyl side chains of alanine at positions 623 and 637. (2)H-NMR spectra were recorded from 25 to 65 degrees C in membranes composed of 1-palmitoyl-2-oleoyl phosphatidylcholine, with and without 33% cholesterol, and relaxation times were measured. Peptide concentration ranged from 0. 5 to 10 mol %. The peptide behaved as predominant monomers undergoing rapid symmetric rotational diffusion; however, there was evidence of reversible side-to-side interaction among the hydrophobic transmembrane domains, particularly at physiological temperatures and in the presence of natural concentrations of cholesterol. The results of these experiments in fluid membranes are consistent with the existence of lipid-protein interactions that would predispose to receptor microdomain formation in membranes of higher animal cells.

摘要

为深入了解细胞膜中受体酪氨酸激酶的侧向关联,对一种包含人表皮生长因子(EGF)受体跨膜结构域的肽段在流体脂质双分子层中进行了研究。该肽段由被认为跨膜的23个氨基酸的疏水片段(EGF受体的Ile(622)至Met(644))以及受体胞质结构域的前10个氨基酸(Arg(645)至Thr(654))组成。通过对623位和637位丙氨酸甲基侧链进行氘代,引入了用于固态核磁共振光谱的探针。在由1-棕榈酰-2-油酰磷脂酰胆碱组成的膜中,在有和没有33%胆固醇的情况下,于25至65摄氏度记录了(2)H-NMR光谱,并测量了弛豫时间。肽段浓度范围为0.5至10摩尔%。该肽段表现为主要以单体形式存在,进行快速对称旋转扩散;然而,有证据表明疏水跨膜结构域之间存在可逆的侧向相互作用,特别是在生理温度下以及在天然浓度胆固醇存在的情况下。这些在流体膜中的实验结果与脂质 - 蛋白质相互作用的存在相一致,这种相互作用有利于在高等动物细胞膜中形成受体微区。

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