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胆固醇修饰红细胞膜中的酰基链组织与蛋白质二级结构

Acyl chain organization and protein secondary structure in cholesterol-modified erythrocyte membranes.

作者信息

Rooney M W, Lange Y, Kauffman J W

出版信息

J Biol Chem. 1984 Jul 10;259(13):8281-5.

PMID:6736035
Abstract

Fourier transform infrared and Raman spectroscopies are used to study the effects of cholesterol on human erythrocyte membrane acyl chain organization (mobility and conformation) and protein secondary structure. Compared to normal red cell membranes (approximately equal to 0.8 mol of cholesterol/mol of phospholipid) (C/P), acyl chain mobility is greater for the depleted (C/P approximately equal to 0.6) and less for the enriched (C/P approximately equal to 1.2) membranes as monitored by shifts of the IR symmetric methylene C-H stretching band (2852 wave numbers, cm-1) over the temperature range 5 to 40 degrees C. There is a continuous first order trend to the IR shifts, but no evidence of a phase change for any of the three cholesterol contents. Raman scattering of C-C stretching vibrations (1065-1130 cm-1) revealed that acyl chain conformation in the three membrane preparations is in a similar state of high disorder; however, compared to depleted and control membranes, the enriched membrane acyl chains display higher order lattice packing. The alpha-helical content of membrane proteins is correlated with the relative intensity of the Raman peptide backbone C-C stretching band (940 cm-1). Spectra of cholesterol-enriched erythrocyte membranes indicate a substantial increase in protein helical structure compared to those of the cholesterol-depleted membranes.

摘要

傅里叶变换红外光谱和拉曼光谱被用于研究胆固醇对人红细胞膜酰基链组织(流动性和构象)以及蛋白质二级结构的影响。与正常红细胞膜(约0.8摩尔胆固醇/摩尔磷脂)(C/P)相比,通过红外对称亚甲基C-H伸缩带(2852波数,cm⁻¹)在5至40摄氏度温度范围内的位移监测发现,对于耗尽型(C/P约为0.6)膜,酰基链流动性更大,而对于富集型(C/P约为1.2)膜,酰基链流动性更小。红外位移呈现连续的一级趋势,但对于三种胆固醇含量中的任何一种,均未发现相变迹象。C-C伸缩振动(1065 - 1130 cm⁻¹)的拉曼散射表明,三种膜制剂中的酰基链构象处于相似的高度无序状态;然而,与耗尽型和对照膜相比,富集型膜的酰基链显示出更高阶的晶格堆积。膜蛋白的α-螺旋含量与拉曼肽主链C-C伸缩带(940 cm⁻¹)的相对强度相关。与胆固醇耗尽型膜相比,胆固醇富集型红细胞膜的光谱表明蛋白质螺旋结构大幅增加。

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