Paulus B F, Bryant F R
Department of Biochemistry, The Johns Hopkins University, School of Public Health, Baltimore, Maryland 21205, USA.
Biochemistry. 1997 Jun 24;36(25):7832-8. doi: 10.1021/bi970576+.
The ATP analog ATPgammaS is a competitive inhibitor of the recA protein-catalyzed ssDNA-dependent ATP hydrolysis reaction. The degree of inhibition by ATPgammaS, however, changes in a time-dependent manner and is consistent with a two step binding mechanism. In the first step, ATPgammaS binds to the recA-ssDNA complex in a rapid equilibrium step (KD = 50 microM). This initial binding step is followed by an isomerization of the recA-ssDNA-ATPgammaS complex to a new conformational state in which ATPgammaS is bound with a significantly higher affinity (overall K(D) = 0.3 microM). This isomerization is followed by the slow hydrolysis of ATPgammaS to ADP and thiophosphate (0.01 min(-1)). The first-order rate constant for the ATPgammaS-mediated isomerization step (20 min(-1)), although significantly greater than the rate of ATPgammaS hydrolysis, is identical to the steady-state rate constant for the recA protein-catalyzed ATP hydrolysis reaction. These results are consistent with a kinetic model in which an ATP-mediated isomerization of the recA-ssDNA complex represents the rate-determining step on the recA protein-catalyzed ssDNA-dependent ATP hydrolysis reaction pathway.
ATP类似物ATPγS是recA蛋白催化的单链DNA依赖性ATP水解反应的竞争性抑制剂。然而,ATPγS的抑制程度随时间变化,这与两步结合机制一致。第一步,ATPγS在快速平衡步骤中与recA-单链DNA复合物结合(解离常数KD = 50微摩尔)。这个初始结合步骤之后是recA-单链DNA-ATPγS复合物异构化为一种新的构象状态,其中ATPγS以显著更高的亲和力结合(总体解离常数K(D) = 0.3微摩尔)。这种异构化之后是ATPγS缓慢水解为ADP和硫代磷酸(0.01分钟^(-1))。ATPγS介导的异构化步骤的一级速率常数(20分钟^(-1)),虽然明显大于ATPγS水解的速率,但与recA蛋白催化的ATP水解反应的稳态速率常数相同。这些结果与一个动力学模型一致,在该模型中,recA-单链DNA复合物的ATP介导的异构化代表了recA蛋白催化的单链DNA依赖性ATP水解反应途径上的速率决定步骤。