首页> 美国卫生研究院文献>Biochemical Journal >Insulin-induced translocation of the glucose transporter GLUT4 in cardiac muscle: studies on the role of small-molecular-mass GTP-binding proteins.
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Insulin-induced translocation of the glucose transporter GLUT4 in cardiac muscle: studies on the role of small-molecular-mass GTP-binding proteins.

机译:胰岛素诱导的葡萄糖转运蛋白GLUT4在心肌中的易位:小分子质量GTP结合蛋白的作用研究。

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摘要

Subcellular fractions obtained from rat cardiac ventricular tissue were used to elucidate a possible functional relationship between small-molecular-mass G-proteins and the insulin-responsive glucose transporter GLUT4. Proteins were separated by SDS/PAGE and transferred to nitrocellulose membranes. Incubation with [alpha-32P]GTP revealed the presence of two major distinct GTP-binding protein bands of 24 and 26 kDa in both plasma and microsomal membranes. Immunoadsorption of microsomal membranes to anti-GLUT4 antibodies was used to isolate GLUT4-enriched membrane vesicles. This material was found to contain a much decreased amount of small G-proteins, with the exclusive presence of the 24 kDa species. Insulin treatment in vivo had no effect on the microsomal membrane content of small GTP-binding proteins, but significantly decreased the 24 kDa species in GLUT4-enriched vesicles by 36 +/- 5% (n = 3). This correlated with a decreased (30-40%) recovery of GLUT4-enriched vesicles from insulin-treated animals. Western-blot analysis of microsomal membranes with a panel of antisera against rab GTP-binding proteins indicated the presence of rab4A, with a molecular mass of 24 kDa, whereas rab1A, rab2 and rab6 were not observed. rab4A was barely detectable in GLUT4-enriched vesicles; however, insulin produced an extensive shift of rab4A from the cytosol and the microsomal fraction to the plasma membrane with a parallel increase in GLUT4. These data show that a small GTP-binding protein is co-localized with GLUT4 in an insulin-responsive intracellular compartment, and strongly suggest that this protein is involved in the exocytosis of GLUT4 in cardiac muscle. Furthermore, the observed translocation of rab4A is compatible with insulin-induced endosome recycling processes, possibly including the glucose transporters.
机译:从大鼠心脏心室组织获得的亚细胞部分用于阐明小分子G蛋白与胰岛素反应性葡萄糖转运蛋白GLUT4之间的可能功能关系。通过SDS / PAGE分离蛋白质,并转移至硝酸纤维素膜上。用α-32P] GTP孵育表明,在质膜和微粒体膜中均存在两个主要的不同的GTP结合蛋白条带,分别为24 kDa和26 kDa。微粒体膜对抗GLUT4抗体的免疫吸附被用于分离富含GLUT4的膜囊泡。发现该物质包含数量减少的小G蛋白,仅存在24 kDa物种。体内胰岛素处理对小的GTP结合蛋白的微粒体膜含量没有影响,但是使富含GLUT4的囊泡中的24 kDa种类显着降低了36 +/- 5%(n = 3)。这与从胰岛素治疗的动物中富含GLUT4的囊泡的回收率降低(30-40%)有关。用一组针对rab GTP结合蛋白的抗血清对微粒体膜进行蛋白质印迹分析表明,存在rab4A,分子量为24 kDa,而未观察到rab1A,rab2和rab6。在富含GLUT4的囊泡中几乎检测不到rab4A;然而,胰岛素产生了rab4A从胞浆和微粒体部分到质膜的大量迁移,而GLUT4却平行增加。这些数据表明,小的GTP结合蛋白与GLUT4在胰岛素反应性细胞内区室共定位,并强烈暗示该蛋白与心肌中GLUT4的胞吐有关。此外,观察到的rab4A易位与胰岛素诱导的内体再循环过程兼容,可能包括葡萄糖转运蛋白。

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