Department of Biophysics, Medical University of Lodz, Poland.
Arch Med Sci. 2011 Feb;7(1):87-91. doi: 10.5114/aoms.2011.20609. Epub 2011 Mar 8.
Conformations of membrane proteins, membrane fluidity of erythrocytes in patients with AILC were studied with the use of electron paramagnetic resonance and spectrophotometric methods. The concentration of substances reacting with thiobarbituric acid was also determined. The aim of the study was to recognize the nature, level and causes of changes in the structure of erythrocytary membrane observed in erythrocytes of patients compared to erythrocytes from healthy controls.
SPIN LABELS: MSL and ISL binding covalently to thiol groups of membrane cytoskeleton proteins were used to analyse modifications occurring in erythrocytary membrane proteins. Doxyl derivatives of fatty acids: 5-DS, 12-DS and 16-DS binding hydrophobically to erythrocytary membrane were used as spin labels for the analysis of erythrocyte membrane lipid fluidity.
Modification of membrane cytoskeleton proteins and increase of membrane lipids fluidity were observed in erythrocytes of the investigated patients. An increase of the concentration of substances reacting with thiobarbituric acid was also confirmed in the erythrocytes of AILC patients.
Observed disorders in the structure of erythrocyte cytoskeleton proteins in patients, which might developed as a consequence of oxidative stress may be conformation changes in the structure of proteins which affect membrane cytoskeleton. The differences in the structure of membrane proteins could be associated with an increase in membrane lipids fluidity. Increased fluidity of erythrocyte membrane may be a result of disorders in protein-lipid interaction or membrane lipid peroxidation activity.
采用电子顺磁共振和分光光度法研究了 AILC 患者红细胞的膜蛋白构象和膜流动性,同时还测定了与硫代巴比妥酸反应的物质的浓度。本研究的目的是识别与健康对照组相比,在患者红细胞中观察到的红细胞膜结构变化的性质、程度和原因。
自旋标记:MSL 和 ISL 与膜细胞骨架蛋白的巯基共价结合,用于分析红细胞膜蛋白发生的修饰。脂肪酸的二氧芑衍生物:5-DS、12-DS 和 16-DS 与红细胞膜疏水结合,用作红细胞膜脂流动性的自旋标记。
在研究患者的红细胞中观察到了膜细胞骨架蛋白的修饰和膜脂流动性的增加。同时还证实 AILC 患者的红细胞中与硫代巴比妥酸反应的物质的浓度增加。
观察到患者红细胞骨架蛋白结构的紊乱,这可能是氧化应激的结果,可能是影响膜细胞骨架的蛋白质结构的构象变化。膜蛋白结构的差异可能与膜脂流动性的增加有关。红细胞膜流动性的增加可能是由于蛋白质-脂质相互作用的紊乱或膜脂质过氧化活性的增加所致。