Chapman B E, O'Sullivan W J, Scopes R K, Reed G H
Biochemistry. 1977 Mar 8;16(5):1005-10. doi: 10.1021/bi00624a031.
Measurements of the relaxation rate of water protons (PRR) have been used to study the interaction of yeast phosphoglycerate kinase with the manganous complexes of a number of nucleotides. The results indicate that phosphoglycerate kinase belongs to the same class of enzymes as creatine kinase, adenylate kinase, formyltetrahydrofolate synthetase, and arginine kinase, with maximal binding of metal ion to tne enzyme in the presence of the nucleotide substrate. However, an analysis of titration curves for a number of nucleoside diphosphates (ADP, IDP, GDP) showed that there is a substantial synergism in binding of the metal ion and nucleotide to the enzyme in the ternary complex. The metal-substrate binds to the enzyme approximately two orders of magnitude more tightly than the free nucleotide; Other evidence for an atypical binding scheme for Mn(II)-nucleoside diphosphates was obtained by electron paramagnetic resonance (EPR) studies; the EPR spectrum for the bound Mn(II) in the enzyme-MnADP complex differed substantially from those obtained for other kinases. An identical EPR spectrum is observed with the MnADP complex with the rabbit muscle enzyme as with the yeast enzyme. In contrast, the dissociation constant for the enzyme-MnATP complex is approximately fourfold lower than that for enzyme-ATP, and there are no substantial changes in the electron paramagnetic resonance spectrum of MnATP2- when the complex is bound to phosphoglycerate kinase. A small but significant change in the PRR of water is observed on addition of 3-phosphoglycerate (but not 2-phosphoglycerate) to the MnADP-enzyme complex. However, addition of 3-phosphoglycerate to enzyme-MnADP did not influence the EPR spectrum of the enzyme-bound Mn(II).
利用水质子弛豫率(PRR)测量来研究酵母磷酸甘油酸激酶与多种核苷酸的锰配合物之间的相互作用。结果表明,磷酸甘油酸激酶与肌酸激酶、腺苷酸激酶、甲酰四氢叶酸合成酶和精氨酸激酶属于同一类酶,在核苷酸底物存在的情况下,金属离子与该酶的结合达到最大值。然而,对多种二磷酸核苷(ADP、IDP、GDP)滴定曲线的分析表明,在三元复合物中,金属离子和核苷酸与该酶的结合存在显著的协同作用。金属 - 底物与酶的结合比游离核苷酸紧密约两个数量级;通过电子顺磁共振(EPR)研究获得了关于Mn(II) - 二磷酸核苷非典型结合模式的其他证据;酶 - MnADP复合物中结合的Mn(II)的EPR谱与其他激酶的EPR谱有很大不同。兔肌酶的MnADP复合物与酵母酶的MnADP复合物具有相同的EPR谱。相比之下,酶 - MnATP复合物的解离常数比酶 - ATP复合物的解离常数低约四倍,并且当复合物与磷酸甘油酸激酶结合时,MnATP2 - 的电子顺磁共振谱没有实质性变化。向MnADP - 酶复合物中添加3 - 磷酸甘油酸(而不是2 - 磷酸甘油酸)时,观察到水的PRR有微小但显著的变化。然而,向酶 - MnADP中添加3 - 磷酸甘油酸并不影响酶结合的Mn(II)的EPR谱。