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Kinetics of complexing activation by the magnesium ion on green crab (Scylla serrata) alkaline phosphatase.

机译:绿蟹(Scylla serrata)碱性磷酸酶上的镁离子引起的络合活化的动力学。

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摘要

As with mammalian enzymes, green crab (Scylla serrata) alkaline phosphatase can be activated by Mg2+ through a time-dependent course. The activation is mainly a Vmax effect. Tsou's method was used to study the kinetic course of activation. The results show that the enzyme was activated by a complexing scheme that had not been previously identified: the enzyme first reversibly and quickly binds Mg2+ and then undergoes a slow reversible course to activation, with a relatively high activation energy (78 +/- 4 kJ/mol) and a slow conformational change. The activation reaction is a single molecule reaction, and the apparent activation rate constant is independent of Mg2+ concentration if the concentration is sufficiently high. The microscopic rate constants of activation and the association constant were determined from the measurements. The proposed scheme may also be applied to the Mg2+ activation mechanism for mammalian enzyme, to explain why the activation rate is time-dependent and not diffusion controlled. Substrate binding was also shown to affect the activation rate constant.
机译:与哺乳动物酶一样,绿蟹(Scylla serrata)碱性磷酸酶可以通过Mg2 +随时间变化而被激活。激活主要是Vmax效应。 Tsou的方法用于研究激活的动力学过程。结果表明,该酶是通过以前未发现的络合方案激活的:该酶首先可逆地快速结合Mg2 +,然后以相对较高的活化能(78 +/- 4 kJ)缓慢可逆地活化。 / mol)和缓慢的构象变化。活化反应是单分子反应,并且如果该浓度足够高,则表观活化速率常数与Mg 2+浓度无关。由测量确定活化的微观速率常数和缔合常数。所提出的方案还可以应用于哺乳动物酶的Mg2 +激活机制,以解释为什么激活速率是时间依赖性的而不是扩散控制的。还显示了底物结合影响活化速率常数。

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