Miller J A, Gravallese E, Bunn H F
J Clin Invest. 1980 Apr;65(4):896-901. doi: 10.1172/JCI109743.
Nonenzymatic glycosylation of proteins of the erythrocyte membrane was determined by incubating erythrocyte ghosts with [3H]borohydride. The incorporation of tritium into protein provides a reliable assay of ketoamine linkages. The membrane proteins from 18 patients with diabetes incorporated twice as much radioactivity as membrane proteins from normal erythrocytes. After acid hydrolysis, amino acid analysis showed that the majority of radioactivity was localized to glucosyllysine. Autoradiograms showed that all of the major proteins of the erythrocyte membrane, separated by electrophoresis on sodium dodecyl sulfate gels, contained ketoamine linkages. No protein bands in either normal or diabetic erythrocytes showed significant preferential labeling. Erythrocyte membranes from three patients with hemolytic anemia showed reduced incorporation of tritium from [3H]-borohydride, indicating decreased nonenzymatic glycosylation. Two patients with diabetes and hemolytic anemia had incorporation of radioactivity similar to that of normal individuals. In these groups of patients the incorporation of tritium into erythrocyte membrane proteins correlated with levels of hemoglobin AIc. Thus the modification of membrane proteins like that of hemoglobin depends on blood glucose levels as well as erythrocyte age. These studies show that the enhanced nonenzymatic glycosylation of proteins in diabetics extends beyond hemoglobin to the proteins of the erythrocyte membrane and probably affects other proteins that have slow turnover and are exposed to high concentrations of glucose.
通过用[3H]硼氢化物孵育红细胞影来测定红细胞膜蛋白的非酶糖基化。氚掺入蛋白质中可提供对酮胺键的可靠检测。18例糖尿病患者的膜蛋白掺入的放射性是正常红细胞膜蛋白的两倍。酸水解后,氨基酸分析表明,大部分放射性定位于葡糖基赖氨酸。放射自显影片显示,在十二烷基硫酸钠凝胶上通过电泳分离的红细胞膜的所有主要蛋白质都含有酮胺键。正常或糖尿病红细胞中的蛋白带均未显示出明显的优先标记。3例溶血性贫血患者的红细胞膜显示[3H]硼氢化物的氚掺入减少,表明非酶糖基化降低。2例糖尿病合并溶血性贫血患者的放射性掺入与正常个体相似。在这些患者组中,氚掺入红细胞膜蛋白与糖化血红蛋白A1c水平相关。因此,像血红蛋白那样,膜蛋白的修饰取决于血糖水平以及红细胞的年龄。这些研究表明,糖尿病患者蛋白质非酶糖基化增强不仅限于血红蛋白,还扩展到红细胞膜蛋白,可能还会影响其他周转缓慢且暴露于高浓度葡萄糖的蛋白质。