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3-O-甲基-D-葡萄糖对肌管中 GLUT4 活性的调节。

Regulation of GLUT4 activity in myotubes by 3-O-methyl-d-glucose.

机构信息

Department of Nuclear Medicine, the Hebrew University-Hadassah Medical Center, Jerusalem 9112001, Israel; Institute for Drug Research, Section of Pharmacology, Diabetes Research Unit, Faculty of Medicine, The Hebrew University, Jerusalem 9112102, Israel.

The Skin Research Institute, The Dead-Sea & Arava Science Center, Israel; Institute for Drug Research, Section of Pharmacology, Diabetes Research Unit, Faculty of Medicine, The Hebrew University, Jerusalem 9112102, Israel.

出版信息

Biochim Biophys Acta Biomembr. 2017 Oct;1859(10):1900-1910. doi: 10.1016/j.bbamem.2017.06.013. Epub 2017 Jun 23.

Abstract

The rate of glucose influx to skeletal muscles is determined primarily by the number of functional units of glucose transporter-4 (GLUT4) in the myotube plasma membrane. The abundance of GLUT4 in the plasma membrane is tightly regulated by insulin or contractile activity, which employ distinct pathways to translocate GLUT4-rich vesicles from intracellular compartments. Various studies have indicated that GLUT4 intrinsic activity is also regulated by conformational changes and/or interactions with membrane components and intracellular proteins in the vicinity of the plasma membrane. Here we show that the non-metabolizable glucose analog 3-O-methyl-d-glucose (MeGlc) augmented the rate of hexose transport into myotubes by increasing GLUT4 intrinsic activity without altering the content of the transporter in the plasma membrane. This effect was not a consequence of ATP depletion or hyperosmolar stress and did not involve Akt/PKB or AMPK signal transduction pathways. MeGlc reduced the inhibitory potency (increased K) of indinavir, a selective inhibitor of GLUT4, in a dose-dependent manner. Kinetic analyses indicate that MeGlc induced changes in GLUT4 or GLUT4 complexes within the plasma membrane, which enhanced the hexose transport activity and reduced the potency of indinavir inhibition. Finally, we present a simple kinetic analysis for screening and discovering low molecular weight compounds that augment GLUT4 activity.

摘要

骨骼肌对葡萄糖的摄取速率主要取决于肌管细胞膜上葡萄糖转运蛋白 4(GLUT4)的功能单位数量。GLUT4 在质膜中的丰度受胰岛素或收缩活性的严格调节,这两种调节方式采用不同的途径将富含 GLUT4 的囊泡从细胞内隔室转运到质膜。多项研究表明,GLUT4 的固有活性也受质膜附近的构象变化和/或与膜成分和细胞内蛋白的相互作用的调节。在这里,我们表明,非代谢性葡萄糖类似物 3-O-甲基-D-葡萄糖(MeGlc)通过增加 GLUT4 的固有活性而不是改变质膜中转运体的含量来增加肌管中己糖的转运速率。这种作用不是由于 ATP 耗竭或高渗应激引起的,也不涉及 Akt/PKB 或 AMPK 信号转导途径。MeGlc 以剂量依赖性方式降低了选择性 GLUT4 抑制剂茚地那韦的抑制效力(增加 K)。动力学分析表明,MeGlc 诱导质膜内 GLUT4 或 GLUT4 复合物发生变化,从而增强了己糖转运活性并降低了茚地那韦抑制的效力。最后,我们提出了一种简单的动力学分析方法,用于筛选和发现能增强 GLUT4 活性的低分子量化合物。

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