Holzhütter H G, Jacobasch G, Bisdorff A
Eur J Biochem. 1985 May 15;149(1):101-11. doi: 10.1111/j.1432-1033.1985.tb08899.x.
A mathematical model of glycolysis in human erythrocytes is proposed to study the influence of a pyruvate kinase deficiency on the energy metabolism. The model takes into account the main regulatory properties of the non-equilibrium enzymes and the magnesium-complex formation by the adenine nucleotides and by 2,3-bisphosphoglycerate. In the normal case (no enzyme defect) the calculated flux rates and metabolite concentrations are in a good agreement with experimental data. It is shown that a severe pyruvate kinase deficiency manifested in a tenfold diminished activity of that enzyme leads to a remarkable decrease of the glycolytic flux and the ATP concentration of about 50% of the normal values. On the other hand a lowering of the pyruvate kinase activity to half of the normal value, characteristic for the heterozygotes, gives no significant alterations of the metabolite concentrations and the flux rates compared with the normal case which is in accordance with the lack of clinical symptoms for a metabolic disease of these probands. For three patients with known alterations of their pyruvate kinase mutants the calculated metabolite concentrations and the control characteristics permit estimation of the degree of disorder of the glycolytic pathway. The resulting classification corresponds well to other independent experimental and clinical findings. In particular, the calculation demonstrates that there is no simple correlation between the lowered enzyme activity and the reduced flux rate through the affected pathway.
为研究丙酮酸激酶缺乏对能量代谢的影响,提出了一个人类红细胞糖酵解的数学模型。该模型考虑了非平衡酶的主要调节特性以及腺嘌呤核苷酸和2,3-二磷酸甘油酸形成的镁络合物。在正常情况下(无酶缺陷),计算得到的通量率和代谢物浓度与实验数据吻合良好。结果表明,丙酮酸激酶严重缺乏表现为该酶活性降低10倍,导致糖酵解通量和ATP浓度显著下降,约为正常值的50%。另一方面,丙酮酸激酶活性降至正常值的一半,这是杂合子的特征,与正常情况相比,代谢物浓度和通量率没有显著变化,这与这些先证者代谢疾病缺乏临床症状一致。对于三名已知丙酮酸激酶突变体改变的患者,计算得到的代谢物浓度和控制特征允许估计糖酵解途径的紊乱程度。所得分类与其他独立的实验和临床发现非常吻合。特别是,计算表明酶活性降低与受影响途径通量率降低之间没有简单的相关性。