Shane B
J Biol Chem. 1980 Jun 25;255(12):5663-7.
The mechanism of action of folylpolyglutamate synthetase from Corynebacterium sp. was investigated using tetrahydrofolate, MgATP, and glutamate as the substrates. Initial velocity, product inhibition, and competitive inhibition studies were consistent with an Ordered Ter Ter mechanism with MgATP binding first to the enzyme, tetrahydrofolate second, and glutamate last. The order of dissociation from the enzyme was ADP, folate, and Pi. This mechanism precludes the sequential addition of glutamate moieties to enzyme-bound folate. The Michaelis constants for (dl)-tetrahydrofolate, MgATP, and glutamate were 2,1 muM, 18 MUM, and 160 muM, respectively. Beta, gamma-Methylene-ATP was a very effective inhibitor of the reaction with an affinity for the enzyme 1 order of magnitude greater than that of ATP.
利用四氢叶酸、MgATP和谷氨酸作为底物,对棒状杆菌属的叶酰聚谷氨酸合成酶的作用机制进行了研究。初始速度、产物抑制和竞争性抑制研究结果与有序的Ter Ter机制一致,即MgATP首先与酶结合,四氢叶酸其次,谷氨酸最后。从酶上解离的顺序是ADP、叶酸和磷酸。这种机制排除了将谷氨酸部分依次添加到与酶结合的叶酸上的可能性。(dl)-四氢叶酸、MgATP和谷氨酸的米氏常数分别为2.1 μM、18 μM和160 μM。β,γ-亚甲基-ATP是该反应的一种非常有效的抑制剂,对酶的亲和力比ATP高1个数量级。