Lund S, Holman G D, Schmitz O, Pedersen O
Department of Endocrinology and Metabolism, Amtssygehuset, Aarhus University Hospital, Denmark.
FEBS Lett. 1993 Sep 20;330(3):312-8. doi: 10.1016/0014-5793(93)80895-2.
Employing subcellular membrane fractionation methods it has been shown that insulin induces a 2-fold increase in Glut 4 protein content in the plasma membrane of skeletal muscle from rats. Data based upon this technique are, however, impeded by poor plasma membrane recovery and cross-contamination with intracellular membrane vesicles. The present study was undertaken to compare the subcellular fractionation technique with the technique using [3H]ATB-BMPA exofacial photolabelling and immunoprecipitation of Glut 4 on soleus muscles from 3-week-old Wistar rats. Maximal insulin stimulation resulted in a 6-fold increase in 3-O-methylglucose uptake, and studies based on the subcellular fractionation method showed a 2-fold increase in Glut 4 content in the plasma membrane, whereas the exofacial photolabelling demonstrated a 6- to 7-fold rise in cell surface associated Glut 4 protein. Glucose transport activity was positively correlated with cell surface Glut 4 content as estimated by exofacial labelling.
(1) the increase in glucose uptake in muscle after insulin exposure is caused by an augmented concentration of Glut 4 protein on the cell surface membrane, (2) at maximal insulin stimulation (20 mU/ml) approximately 40% of the muscle cell content of Glut 4 is at the cell surface, and (3) the exofacial labelling technique is more sensitive than the subcellular fractionation technique in measuring the amount of glucose transporters on muscle cell surface.
采用亚细胞膜分级分离方法已表明,胰岛素可使大鼠骨骼肌质膜中Glut 4蛋白含量增加2倍。然而,基于该技术的数据受到质膜回收率低以及与细胞内膜囊泡交叉污染的阻碍。本研究旨在比较亚细胞分级分离技术与使用[3H]ATB - BMPA细胞外光标记和对3周龄Wistar大鼠比目鱼肌中Glut 4进行免疫沉淀的技术。最大胰岛素刺激导致3 - O - 甲基葡萄糖摄取增加6倍,基于亚细胞分级分离方法的研究表明质膜中Glut 4含量增加2倍,而细胞外光标记显示细胞表面相关Glut 4蛋白增加6至7倍。通过细胞外标记估计,葡萄糖转运活性与细胞表面Glut 4含量呈正相关。
(1)胰岛素暴露后肌肉中葡萄糖摄取的增加是由细胞表面膜上Glut 4蛋白浓度增加引起的;(2)在最大胰岛素刺激(20 mU/ml)时,肌肉细胞中约40%的Glut 4位于细胞表面;(3)在测量肌肉细胞表面葡萄糖转运体数量方面,细胞外标记技术比亚细胞分级分离技术更敏感。