Ranaldi F, Vanni P, Giachetti E
Dipartimento di Scienze Biochimiche, Università di Firenze, Firenze, Italy.
Plant Physiol. 2000 Nov;124(3):1131-8. doi: 10.1104/pp.124.3.1131.
Our results show that the phosphate ion is a nonlinear competitive inhibitor of Pinus pinea isocitrate lyase. In addition, this compound induces a sigmoidal response of the enzyme, which usually exhibits standard Michaelis-Menten kinetics. This peculiar behavior of P. pinea isocitrate lyase could be explained by a dimer (two-site) model, in which phosphate binds cooperatively, but the affinity of the vacant site for substrate (the magnesium-isocitrate complex) remains the same. As a result, the interaction of phosphate with free enzyme produces an inhibitor-enzyme-inhibitor species that is of significant importance in determining reaction rate; a possible regulatory role of the glyoxylate cycle by inorganic phosphate is suggested. The mode of phosphate inhibition is consistent with both the mechanism for magnesium ion activation of P. pinea isocitrate lyase and its site heterogeneity. Our results explain the cooperative effects observed by some authors in kinetic studies of isocitrate lyase carried out in phosphate buffers and also account for the higher K(m) values determined by using such assay systems. Phosphate buffer should be avoided in performing isocitrate lyase kinetics.
我们的结果表明,磷酸根离子是欧洲赤松异柠檬酸裂解酶的非线性竞争性抑制剂。此外,该化合物会诱导该酶呈现S形反应,而该酶通常表现出标准的米氏动力学。欧洲赤松异柠檬酸裂解酶的这种特殊行为可以用二聚体(双位点)模型来解释,其中磷酸盐协同结合,但空位对底物(镁 - 异柠檬酸复合物)的亲和力保持不变。结果,磷酸盐与游离酶的相互作用产生了一种抑制剂 - 酶 - 抑制剂物种,这在确定反应速率方面具有重要意义;由此提出了无机磷酸盐对乙醛酸循环可能的调节作用。磷酸盐抑制模式与欧洲赤松异柠檬酸裂解酶的镁离子激活机制及其位点异质性均相符。我们的结果解释了一些作者在磷酸盐缓冲液中进行异柠檬酸裂解酶动力学研究时观察到的协同效应,也说明了使用此类测定系统所确定的较高的K(m)值。在进行异柠檬酸裂解酶动力学研究时应避免使用磷酸盐缓冲液。