Gibbs E M, Stock J L, McCoid S C, Stukenbrok H A, Pessin J E, Stevenson R W, Milici A J, McNeish J D
Department of Metabolic Diseases, Pfizer, Inc., Groton, Connecticut 06340, USA.
J Clin Invest. 1995 Apr;95(4):1512-8. doi: 10.1172/JCI117823.
The effects of increased GLUT4 (insulin-regulatable muscle/fat glucose transporter) expression on glucose homeostasis in a genetic model of non-insulin-dependent diabetes mellitus were determined by expressing a human GLUT4 transgene (hGLUT4) in diabetic C57BL/KsJ-db/db mice. A genomic hGLUT4 construct was microinjected directly into pronuclear murine embryos of db/+ matings to maintain the inbred background. Four lines of hGLUT4 transgenic mice were bred to homozygosity at the db locus and all showed a marked reduction of both fasted and fed plasma glucose levels (to approximately 50 and 360 mg/dl, respectively) compared with age-matched nontransgenic db/db mice (approximately 215 and 550 mg/dl, respectively), as well as an enhanced disposal of an oral glucose challenge. In situ immunocytochemical localization of GLUT4 protein in muscle from hGLUT4 db/db mice showed elevated plasma membrane-associated GLUT4 protein in the basal state, which markedly increased after an insulin/glucose injection. In contrast, nontransgenic db/db mice had low levels of plasma membrane-associated GLUT4 protein in the basal state with a relatively small increase after an insulin/glucose challenge. Since the intracellular GLUT4 levels in db/db mice were similar to nontransgenic db/+ mice, the glucose transport defect in db/db mice is at the level of glucose transporter translocation. Together, these data demonstrate that GLUT4 upregulation overcomes the glucose transporter translocation defect and alleviates insulin resistance in genetically diabetic mice, thus resulting in markedly improved glycemic control.
通过在糖尿病C57BL/KsJ-db/db小鼠中表达人GLUT4转基因(hGLUT4),确定了非胰岛素依赖型糖尿病遗传模型中GLUT4(胰岛素调节的肌肉/脂肪葡萄糖转运蛋白)表达增加对葡萄糖稳态的影响。将基因组hGLUT4构建体直接显微注射到db/+交配的原核小鼠胚胎中,以维持近交背景。将四系hGLUT4转基因小鼠培育至db位点纯合,与年龄匹配的非转基因db/db小鼠(分别约为215和550mg/dl)相比,所有小鼠的空腹和进食后血浆葡萄糖水平均显著降低(分别约为50和360mg/dl),口服葡萄糖耐量试验的葡萄糖处置能力也增强。hGLUT4 db/db小鼠肌肉中GLUT4蛋白的原位免疫细胞化学定位显示,基础状态下质膜相关GLUT4蛋白升高,胰岛素/葡萄糖注射后显著增加。相比之下,非转基因db/db小鼠基础状态下质膜相关GLUT4蛋白水平较低,胰岛素/葡萄糖刺激后增加相对较小。由于db/db小鼠的细胞内GLUT4水平与非转基因db/+小鼠相似,db/db小鼠的葡萄糖转运缺陷在于葡萄糖转运蛋白转位水平。这些数据共同表明,GLUT4上调克服了葡萄糖转运蛋白转位缺陷,减轻了遗传性糖尿病小鼠的胰岛素抵抗,从而显著改善了血糖控制。