Jenkins C L, Hatch M D
Arch Biochem Biophys. 1985 May 15;239(1):53-62. doi: 10.1016/0003-9861(85)90811-2.
The properties and reaction mechanism of maize leaf pyruvate,Pi dikinase are described. Km values were determined for the forward reaction substrates, pyruvate, ATP, and Pi, at pH 7.4 and 8.0 and for reverse reaction substrates at pH 7.4. Enzyme activity was almost totally dependent on added monovalent cations in both directions. NH+4 was most effective, with Ka values of about 0.38 mM for the forward reaction and 2 mM for the reverse reaction. K+ also completely activated the enzyme in the forward direction (Ka = 8 mM) but only partially activated in the reverse direction. Na+ had little effect on either reaction. The pH optimum for the forward reaction was about 8.2; the reverse reaction optimum was about 6.9. Maximum activity for the reverse direction was about twice the maximum forward direction rate. From data on the requirements for the ATP-AMP exchange reaction, on the mechanism of inhibition of the forward reaction by PEP, AMP, and PPi, and from the kinetics of the interaction of varying certain substrate pairs, it was concluded that the maize leaf pyruvate,Pi dikinase reaction proceeded by the two-step Bi Bi Uni Uni mechanism. This differs from the mechanism of catalysis by the bacterial enzyme.
本文描述了玉米叶片丙酮酸磷酸双激酶的性质及反应机制。测定了pH 7.4和8.0条件下正向反应底物丙酮酸、ATP和磷酸的Km值,以及pH 7.4条件下逆向反应底物的Km值。酶活性在两个方向上几乎完全依赖于添加的单价阳离子。NH₄⁺最为有效,正向反应的Ka值约为0.38 mM,逆向反应的Ka值为2 mM。K⁺在正向反应中也能完全激活该酶(Ka = 8 mM),但在逆向反应中只能部分激活。Na⁺对任一反应的影响都很小。正向反应的最适pH约为8.2;逆向反应的最适pH约为6.9。逆向反应的最大活性约为正向反应最大速率的两倍。根据ATP-AMP交换反应的需求数据、PEP、AMP和PPi对正向反应的抑制机制以及不同底物对相互作用的动力学数据,得出玉米叶片丙酮酸磷酸双激酶反应按两步Bi Bi Uni Uni机制进行。这与细菌酶的催化机制不同。