Watt G D, Burns A
Biochemistry. 1977 Jan 25;16(2):264-70. doi: 10.1021/bi00621a017.
The kinetics of S2O42-utilization and ATP hydrolysis during the nitrogenase-catalyzed H2 evolution and acetylene and nitrogen-reducing reactions were studied using a polarographic technique to monitor-S2O42-concentration. Rate constants for both S2O42-utilization and ATP hydrolysis were determined as a function of temperature and corresponding activation energies determined. The activation energy for ATP hydrolysis differs from that for product formation or S2O42-utilization by 5 kcal/mol above 20 degrees C and by 25 kcal/mol below 20 degrees C. The rate law for S2O42-utilization was determined and describes the enzyme catalyzed rate over a 1000-fold variation in S2O42-concentration and at least a 100-fold change in ATP concentration. The rate law for S2O42-utilization under N2-reducing conditions at 25 degrees C is given by -d([S2O42-]/dt = (2.3 x 10(-3) ET[S2O42-]1/2-[ATP]2)/([ATP]2 + K1[ATP] + K2), where ET is total enzyme concentration in mg/ml and K1 and K2 are equilibrium constants for ATP binding to nitrogenase. The half-order dependence of the rate on S2O42-concentration in interpreted in terms of the equilibrium S2O42- = 2SO2-, in which SO2- is the actual electron donor to nitrogenase. A partial mechanism incorporating these results is presented.
采用极谱技术监测连二亚硫酸根离子(S2O42-)浓度,研究了固氮酶催化氢气释放、乙炔还原和氮气还原反应过程中S2O42-利用及ATP水解的动力学。测定了S2O42-利用和ATP水解的速率常数与温度的函数关系,并确定了相应的活化能。在20℃以上,ATP水解的活化能与产物形成或S2O42-利用的活化能相差5千卡/摩尔;在20℃以下,相差25千卡/摩尔。确定了S2O42-利用的速率方程,该方程描述了在S2O42-浓度变化1000倍和ATP浓度至少变化100倍的情况下酶催化反应速率。25℃下氮气还原条件下S2O42-利用的速率方程为-d([S2O42-]/dt = (2.3 x 10(-3) ET[S2O42-]1/2-[ATP]2)/([ATP]2 + K1[ATP] + K2),其中ET是以毫克/毫升为单位的总酶浓度,K1和K2是ATP与固氮酶结合的平衡常数。速率对S2O42-浓度的半级依赖性是根据平衡S2O42- = 2SO2-来解释的,其中SO2-是固氮酶的实际电子供体。提出了一个包含这些结果的部分机制。