Lorimer G H, Badger M R, Andrews T J
Biochemistry. 1976 Feb 10;15(3):529-36. doi: 10.1021/bi00648a012.
Ribulose-1,5-bisphosphate carboxylase was activated by incubation with CO2 and Mg2++, and inactivated upon removal of CO2 and Mg2+ by gel filtration. The activation process involved CO2 rather than HCO3-. The activity of the enzyme was dependent upon the preincubation concentrations of CO2 and Mg2+ and upon the preincubation pH, indicating that activation involved the reversible formation of an equilibrium complex of enzyme-CO2-Mg. The initial rate of activation was linearly dependent upon the CO2 concentration but independent of the Mg2+ concentration. Kinetic analyses indicated that the enzyme reacted first with CO2 in a rate-determining and reversible step, followed by a rapid reaction with Mg2+ to form an active ternary complex (see eq 1 in text). The pseudo-first order rate constant, kobsd, for the activation process at constant pH was derived: kobsd=k1[CO2] + (k2k4/k3[Mg2+]). Experimentally, kobsd was shown to be linearly dependent upon the CO2 concentration and inversely dependent upon the Mg2+ concentration. The activity of the enzyme after preincubation to equilibrium at constant concentrations of CO2 and Mg2+ increased as the preincubation pH was raised, indicating that CO2 reacted with an enzyme group whose pK was distinctly alkaline. It is proposed that the activation of ribulose-1, 5-biphosphate carboxylane involves the formation of a carbamate.
核酮糖-1,5-二磷酸羧化酶通过与二氧化碳和镁离子一起温育而被激活,通过凝胶过滤除去二氧化碳和镁离子后则失活。激活过程涉及二氧化碳而非碳酸氢根离子。该酶的活性取决于二氧化碳和镁离子的预温育浓度以及预温育pH值,这表明激活涉及酶-二氧化碳-镁平衡复合物的可逆形成。激活的初始速率与二氧化碳浓度呈线性相关,但与镁离子浓度无关。动力学分析表明,该酶首先在一个速率决定且可逆的步骤中与二氧化碳反应,随后与镁离子快速反应形成活性三元复合物(见文中方程1)。推导了在恒定pH值下激活过程的伪一级速率常数kobsd:kobsd = k1[CO2] + (k2k4/k3[Mg2+])。实验表明,kobsd与二氧化碳浓度呈线性相关,与镁离子浓度呈反比。在二氧化碳和镁离子恒定浓度下预温育至平衡后,该酶的活性随着预温育pH值的升高而增加,这表明二氧化碳与一个pK值明显呈碱性的酶基团发生了反应。有人提出,核酮糖-1,5-二磷酸羧化酶的激活涉及氨基甲酸盐的形成。