Malaisse W J, Bodur H
Laboratory of Experimental Medicine, Brussels Free University, Brussels, Belgium.
Int J Biochem. 1991;23(12):1471-81. doi: 10.1016/0020-711x(91)90290-4.
The fate of unlabelled D-glucose and D-[2-3H]glucose in pancreatic islets was simulated taking into account experimental values for glycolytic flux, intracellular concentration of D-glucose 6-phosphate and phosphoglucoisomerase activity. The model, which also takes into account the isotopic discrimination in velocity and intramolecular transfer of tritium between D-[2-3H]glucose 6-phosphate and D-[1-3H]fructose 6-phosphate in the reaction catalyzed by phosphoglucoisomerase, revealed that the predicted generation of 3HOH from D-[2-3H]glucose was much higher than the true experimental value. Such a discrepancy is reinforced by the consideration that the generation of 3HOH from D-[2-3H]glucose in islet cells is not solely attributable to the phosphoglucoisomerase-catalyzed detritiation of hexose 6-phosphates metabolized in the glycolytic pathway. In order to reconcile experimental and theoretical values for 3HOH production, it was found necessary to postulate enzyme-to-enzyme tunnelling of hexose 6-phosphates in the hexokinase/phosphoglucoisomerase/phosphofructokinase sequence. It is proposed that such a tunnelling may favour the anomeric specificity of D-glucose metabolism in islet cells, by restricting the anomerization of hexose 6-phosphates.
考虑到糖酵解通量、D-葡萄糖6-磷酸的细胞内浓度和磷酸葡萄糖异构酶活性的实验值,对胰腺胰岛中未标记的D-葡萄糖和D-[2-³H]葡萄糖的命运进行了模拟。该模型还考虑了磷酸葡萄糖异构酶催化的反应中,D-[2-³H]葡萄糖6-磷酸和D-[1-³H]果糖6-磷酸之间³H的速度同位素歧视和分子内转移,结果显示,预测的D-[2-³H]葡萄糖产生的³HOH远高于实际实验值。考虑到胰岛细胞中D-[2-³H]葡萄糖产生的³HOH并非仅归因于糖酵解途径中代谢的己糖6-磷酸的磷酸葡萄糖异构酶催化的脱氚作用,这种差异更加明显。为了使³HOH产生的实验值和理论值一致,发现有必要假定己糖6-磷酸在己糖激酶/磷酸葡萄糖异构酶/磷酸果糖激酶序列中酶对酶的穿隧效应。有人提出,这种穿隧效应可能通过限制己糖6-磷酸的异头化作用,有利于胰岛细胞中D-葡萄糖代谢的异头特异性。