Mal'ian A N, Vitseva O I
Biokhimiia. 1983 May;48(5):718-24.
The kinetics of reversible inactivation of chloroplast CF1-ATPase by Mg2+ and ADP was studied. The rate of inactivation obeys the first-order equation and is independent of ADP concentration. An analysis of the dependence of the inactivation rate on Mg2+ concentration demonstrated that the limiting step of inactivation is other than Mg2+ binding, i.e. the subsequent steps which include, in all probability, the conformational changes of the enzyme. The original Mg2+-dependent activity of CF1-ATPase is close to that observed under steady-state conditions in the presence of sulphate and methanol and exceeds the Ca2+-dependent activity approximately 6-fold. Preincubation of CF1-ATPase with Mg2+ results in inhibition of the original activity of the enzyme. This effect is not removed by addition of the ATP-regenerating system (pyruvate kinase + phosphoenol pyruvate) to the preincubation medium but is diminished by sulphite and the non-hydrolyzed analog of ATP--beta, gamma-methyladenosine-5-triphosphate. After addition of AMPPCP to the reaction mixture the initial reaction rate is decreased, while the steady-state rate is increased. It may be concluded that the Mg2+-dependent inactivation of CF1-ATPase is induced by the tightly bound ADP. The latter can be replaced by ATP, which in contrast to ADP does not form an inactive complex with the enzyme. A comparison of experimental results with literature data suggests that the mechanism of "alternating sites" proposed by Boyer et al. for ATP hydrolysis by soluble CF1-ATPase is not realized under the given experimental conditions.
研究了Mg2+和ADP对叶绿体CF1 - ATP酶可逆失活的动力学。失活速率符合一级方程,且与ADP浓度无关。对失活速率与Mg2+浓度依赖性的分析表明,失活的限速步骤不是Mg2+结合,即后续步骤,这很可能包括酶的构象变化。CF1 - ATP酶最初依赖Mg2+的活性接近在硫酸盐和甲醇存在下稳态条件下观察到的活性,并且比依赖Ca2+的活性大约高6倍。CF1 - ATP酶与Mg2+预孵育会导致酶的原始活性受到抑制。向预孵育培养基中添加ATP再生系统(丙酮酸激酶 + 磷酸烯醇丙酮酸)并不能消除这种效应,但亚硫酸盐和ATP的非水解类似物——β,γ - 甲基腺苷 - 5 - 三磷酸会使其减弱。向反应混合物中添加AMPPCP后,初始反应速率降低,而稳态速率增加。可以得出结论,CF1 - ATP酶依赖Mg2+的失活是由紧密结合的ADP诱导的。后者可以被ATP取代,与ADP不同,ATP不会与酶形成无活性复合物。将实验结果与文献数据进行比较表明,Boyer等人提出的可溶性CF1 - ATP酶ATP水解的“交替位点”机制在给定的实验条件下并未实现。