Kulakovskaya T V, Andreeva N A, Karpov A V, Sidorov I A, Kulaev I S
Institute of Biochemistry and Physiology of Microorganisms, Russian Academy of Sciences, Pushchino, Moscow Region, 142292, Russia.
Biochemistry (Mosc). 1999 Sep;64(9):990-3.
The kinetics of hydrolysis of tripolyphosphate by purified exopolyphosphatase from Saccharomyces cerevisiae cytosol has been studied in the presence of Mg2+. Two kinetic models suggesting the formation of complexes of tripolyphosphate and the enzyme with Mg2+ are compared. Both models suggest that only enzyme--substrate complexes containing Mg2+ and tripolyphosphate simultaneously are able to hydrolyze the tripolyphosphate. The first model suggests that the enzyme is able to bind to Mg2+ independently from substrate binding. The second model does not consider this possibility, but suggests that both complexes containing tripolyphosphate and Mg2+ in proportion 1:1 and 1:2 can serve as the reaction substrates. The description of the experimental data by both models is essentially the same. The complex containing tripolyphosphate and Mg2+ in proportion 1:1 is optimal for the enzyme activity, the complex containing tripolyphosphate and Mg2+ in proportion 1:2 being hydrolyzed at a lower rate.
在Mg2+存在的情况下,对来自酿酒酵母细胞质溶胶的纯化胞外多聚磷酸酶催化三聚磷酸盐水解的动力学进行了研究。比较了两种动力学模型,这两种模型均表明三聚磷酸盐和酶与Mg2+形成了复合物。两种模型均表明,只有同时含有Mg2+和三聚磷酸盐的酶-底物复合物才能水解三聚磷酸盐。第一种模型表明,酶能够独立于底物结合而与Mg2+结合。第二种模型不考虑这种可能性,但表明三聚磷酸盐与Mg2+比例为1:1和1:2的两种复合物均可作为反应底物。两种模型对实验数据的描述基本相同。三聚磷酸盐与Mg2+比例为1:1的复合物对酶活性最为适宜,三聚磷酸盐与Mg2+比例为1:2的复合物水解速率较低。