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葡萄糖通量对骨骼肌中己糖激酶II基因表达的调控

Regulation of hexokinase II gene expression by glucose flux in skeletal muscle.

作者信息

Tsao T S, Burcelin R, Charron M J

机构信息

Department of Biochemistry, Albert Einstein College of Medicine, Bronx, New York 10461, USA.

出版信息

J Biol Chem. 1996 Jun 21;271(25):14959-63. doi: 10.1074/jbc.271.25.14959.

Abstract

UNLABELLED

The in vivo studies of transcriptional regulation by glucose, in general, have yielded ambiguous interpretations due to the closed loop relationship between insulin and glucose. Insulin cannot be held as a constant since elevated glucose levels will elicit a corresponding rise in insulin and current animal models of insulinopenia are associated with a plethora of counter-regulatory hormone responses. One potential solution to increase intracellular glucose flux without a further increase in insulin was achieved by transgenic overexpression of the insulin-sensitive glucose transporter, GLUT4, in specific skeletal muscles (previously described in Tsao, T.-S., Burcelin, R., Katz, E. B., Huang, L., and Charron, M. J. (1996) Diabetes 45, 28-36). Using these MLC-GLUT4 transgenic mice as a model, we investigated the effects of increased glucose flux on hexokinase II (HK II) gene expression in skeletal muscle. Under conditions where blood glucose levels were normal and insulin levels decreased by 36%, HK II mRNA level was reduced in non-GLUT4-overexpressing tissues (i.e. heart and adipose tissue) of 2-4-month-old male MLC-GLUT4 transgenic mice. This reduction in HK II mRNA was prevented in skeletal muscle, where overexpression of GLUT4 caused a 2.5-fold increase in basal and insulin-stimulated glucose uptake. The levels of HK II mRNA in heart, muscle, and adipose tissue are paralleled by HK II enzymatic activity.

IN CONCLUSION

  1. due to relative mild insulinopenia, HK II expression is decreased in non-GLUT4-overexpressing tissues of MLC-GLUT4 mice compared to age/sex-matched controls, and 2) GLUT4-mediated increase in cellular glucose flux can prevent the decrease in HK II expression (in GLUT4-overexpressing tissues) as a result of relative mild insulinopenia. Indeed, during the process of aging, the return of circulating insulin levels of MLC-GLUT4 mice to normal levels is associated with the normalization of HK II expression in all tissues of MLC-GLUT4 and age/sex-matched control mice. We propose that: 1) glucose flux has an amplifying effect on the ability of insulin to stimulate skeletal muscle HK II gene expression and 2) insulin-dependent glucose flux may be a potential mechanism by which HK II gene expression is regulated by sensitivity to insulin.
摘要

未标记

总体而言,由于胰岛素与葡萄糖之间的闭环关系,关于葡萄糖对转录调控的体内研究得出的解释模棱两可。胰岛素不能保持恒定,因为血糖水平升高会引起胰岛素相应升高,而目前的胰岛素缺乏动物模型与过多的反调节激素反应相关。通过在特定骨骼肌中转基因过表达胰岛素敏感性葡萄糖转运蛋白GLUT4(如Tsao, T.-S., Burcelin, R., Katz, E. B., Huang, L., and Charron, M. J. (1996) Diabetes 45, 28 - 36中所述),实现了一种在不进一步增加胰岛素的情况下增加细胞内葡萄糖通量的潜在解决方案。以这些MLC - GLUT4转基因小鼠为模型,我们研究了葡萄糖通量增加对骨骼肌中己糖激酶II(HK II)基因表达的影响。在血糖水平正常且胰岛素水平降低36%的条件下,2 - 4月龄雄性MLC - GLUT4转基因小鼠的非GLUT4过表达组织(即心脏和脂肪组织)中HK II mRNA水平降低。在骨骼肌中,HK II mRNA的这种降低得到了预防,其中GLUT4的过表达导致基础和胰岛素刺激的葡萄糖摄取增加了2.5倍。心脏、肌肉和脂肪组织中HK II mRNA的水平与HK II酶活性平行。

结论

1)由于相对轻度的胰岛素缺乏,与年龄/性别匹配的对照相比,MLC - GLUT4小鼠的非GLUT4过表达组织中HK II表达降低;2)GLUT4介导的细胞葡萄糖通量增加可防止因相对轻度的胰岛素缺乏导致的HK II表达降低(在GLUT4过表达组织中)。实际上,在衰老过程中,MLC - GLUT4小鼠循环胰岛素水平恢复到正常水平与MLC - GLUT4和年龄/性别匹配对照小鼠所有组织中HK II表达的正常化相关。我们提出:1)葡萄糖通量对胰岛素刺激骨骼肌HK II基因表达的能力具有放大作用;2)胰岛素依赖性葡萄糖通量可能是HK II基因表达受胰岛素敏感性调节的潜在机制。

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