McCarthy A D, Tipton K F
Biochem J. 1985 Aug 15;230(1):95-9. doi: 10.1042/bj2300095.
Kinetic constants were determined for commercially available samples of ox liver glutamate dehydrogenase, which had previously been shown to have suffered limited proteolysis during preparation, with a range of substrates and effectors. These were compared with the values obtained with enzyme preparations purified in such a way as to prevent this proteolysis from occurring [McCarthy, Walker & Tipton (1980) Biochem. J. 191, 605-611]. The Km values and maximum velocities determined with different substrates revealed little difference between the two preparations although the proteolysed enzyme had lower Km values for NH4+ and glutamate when the activities were determined with NADPH and NADP+ respectively. This preparation was more sensitive to inhibition by Cl- ions but less sensitive to inhibition by high concentrations of the substrate NADH. The two preparations also differed in their sensitivities to allosteric effectors, with the proteolysed enzyme being the less sensitive to inhibition by GTP. At high concentrations of NADH, this preparation was also more sensitive to activation by ADP and ATP.
测定了市售牛肝谷氨酸脱氢酶样品的动力学常数,该样品此前已表明在制备过程中发生了有限的蛋白水解,使用了一系列底物和效应物。将这些结果与通过防止这种蛋白水解发生的方式纯化的酶制剂所获得的值进行了比较[麦卡锡、沃克和蒂普顿(1980年)《生物化学杂志》191卷,605 - 611页]。用不同底物测定的Km值和最大速度显示,两种制剂之间差异不大,尽管当分别用NADPH和NADP +测定活性时,经蛋白水解的酶对NH4 +和谷氨酸的Km值较低。该制剂对Cl -离子的抑制更敏感,但对高浓度底物NADH的抑制不太敏感。两种制剂对变构效应物的敏感性也不同,经蛋白水解的酶对GTP抑制的敏感性较低。在高浓度NADH时,该制剂对ADP和ATP的激活也更敏感。