San Juan Serrano F, Fernández González M, Sánchez López J L, García Martín L O
Departamento de Bioquímica y Biología Molecular, Facultad de Farmacia, Universidad de Santiago de Compostela, Spain.
Int J Biochem Cell Biol. 1995 Sep;27(9):917-22. doi: 10.1016/1357-2725(95)00059-x.
Initial rate and affinity studies on mantle Mytilus phosphorylase a were carried out in order to find possible differences in its kinetic properties with respect to phosphorylase b. Phosphorylase a was not stimulated for any AMP concentrations. Michaelis constants (Km) are 0.05 mg/ml glycogen, 1.15 mM inorganic phosphate and 1.50 mM glucose-1-phosphate. The Kms for the substrates, in the direction of glycogen breakdown, are enhanced by non-saturating concentrations of cosubstrate, without reducing the apparent maximum velocity. First order and hyperbolic kinetics and values of the allosteric constant smaller than 2 were observed. These results suggest a catalytic mechanism different to that shown for mantle Mytilus phosphorylase b.
为了找出贻贝外套膜磷酸化酶a与磷酸化酶b在动力学性质上可能存在的差异,我们对其初始速率和亲和力进行了研究。在任何AMP浓度下,磷酸化酶a均未受到刺激。米氏常数(Km)分别为:糖原0.05mg/ml、无机磷酸盐1.15mM、葡萄糖-1-磷酸1.50mM。在糖原分解方向上,底物的Km值会因非饱和浓度的共底物而增加,而表观最大速度并未降低。观察到一级动力学和双曲线动力学,且别构常数小于2。这些结果表明其催化机制与贻贝外套膜磷酸化酶b不同。