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The role of glucose 6-phosphate in mediating the effects of glucokinase overexpression on hepatic glucose metabolism

机译:6-磷酸葡萄糖在介导葡萄糖激酶过表达对肝葡萄糖代谢的影响中的作用

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Pharmacological activation or overexpression of glucokinase in hepatocytes stimulates glucose phosphorylation, glycolysis and glycogen synthesis. We used an inhibitor of glucose 6-phosphate (Glc6P) hydrolysis, namely the chlorogenic derivative, 1-[2-(4-chloro-phenyl)-cyclopropylmethoxy]-3, 4-dihydroxy-5-(3-imidazo[4,5-b]pyridin-1-yl-3-phenyl-acryloyloxy)-cyclohex anecarboxylic acid (also known as S4048), to determine the contribution of Glc6P concentration, as distinct from glucokinase protein or activity, to the control of glycolysis and glycogen synthesis by glucokinase overexpression. The validity of S4048 for testing the role of Glc6P was supported by its lack of effect on glucokinase binding and its nuclear/cytoplasmic distribution. The stimulation of glycolysis by glucokinase overexpression correlated strongly with glucose phosphorylation, whereas glycogen synthesis correlated strongly with Glc6P concentration. Metabolic control analysis was used to determine the sensitivity of glycogenic flux to glucokinase or Glc6P at varying glucose concentrations (5-20 mm). The concentration control coefficient of glucokinase on Glc6P (1.4-1.7) was relatively independent of glucose concentration, whereas the flux control coefficients of Glc6P (2.4-1.0) and glucokinase (3.7-1.8) on glycogen synthesis decreased with glucose concentration. The high sensitivity of glycogenic flux to Glc6P at low glucose concentration is consistent with covalent modification by Glc6P of both phosphorylase and glycogen synthase. The high control strength of glucokinase on glycogenic flux is explained by its concentration control coefficient on Glc6P and the high control strength of Glc6P on glycogen synthesis. It is suggested that the regulatory strength of pharmacological glucokinase activators on glycogen metabolism can be predicted from their effect on the Glc6P content.
机译:肝细胞中葡萄糖激酶的药理激活或过表达刺激葡萄糖磷酸化,糖酵解和糖原合成。我们使用了6-磷酸葡萄糖(Glc6P)水解抑制剂,即绿原衍生物1- [2-(4-氯-苯基)-环丙基甲氧基] -3、4-二羟基-5-(3-咪唑[4], 5-b]吡啶-1-基-3-苯基-丙烯酰氧基)-环己基氨基甲酸(也称为S4048),以确定Glc6P浓度与葡萄糖激酶蛋白或活性不同,对控制糖酵解和糖原的贡献葡萄糖激酶过表达合成。 S4048对Glc6P的作用的有效性测试受到其对葡萄糖激酶结合及其核/胞质分布缺乏影响的支持。葡萄糖激酶过表达对糖酵解的刺激与葡萄糖磷酸化密切相关,而糖原合成与Glc6P浓度密切相关。使用代谢物对照分析来确定在变化的葡萄糖浓度(5-20​​毫米)下,糖原性通量对葡萄糖激酶或Glc6P的敏感性。葡萄糖激酶对Glc6P的浓度控制系数(1.4-1.7)相对独立于葡萄糖浓度,而Glc6P(2.4-1.0)和葡萄糖激酶(3.7-1.8)对糖原合成的通量控制系数随葡萄糖浓度而降低。在低葡萄糖浓度下,糖原通量对Glc6P的高敏感性与磷酸化酶和糖原合酶的Glc6P共价修饰相一致。葡萄糖激酶对糖原性通量的高控制强度可以通过其对Glc6P的浓度控制系数和Glc6P对糖原合成的高控制强度来解释。建议可以从它们对Glc6P含量的影响来预测药理性葡萄糖激酶激活剂对糖原代谢的调节强度。

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