Reeves R E, Serrano R, South D J
J Biol Chem. 1976 May 25;251(10):2958-62.
The inorganic pyrophosphate-requiring 6-phosphofructokinase of Entamoeba histolytica has been further investigated. The molecular weight of the enzyme is approximately 83,000 and its isoelectric point occurs at pH 5.8 to 6.0. The divalent cation requirement for reaction was explored. In the direction of fructose 6-phosphate formation half-maximal rate required 500 muM magnesium ion; in the direction of fructose bisphosphate formation 8 muM magnesium ion sufficed. ATP, PPi, polyphosphate, acetyl phosphate, or carbamyl phosphate cannot replace PPi as phosphate donor for the conversion of fructose 6-phosphate to fructose bisphosphate. In the direction of fructose 6-phosphate formation arsenate can replace orthophosphate. Isotope exchange studies indicate that little or no exchange occurs between Pi and PPi or between fructose 6-phosphate and fructose bisphosphate in the absence of a third substrate. These findings appear to rule out phosphoenzyme formation and a ping-pong reaction mechanism. PPi, Pi, and fructose bisphosphate are competitive inhibitors of fructose bisphosphate, PPi, and fructose 6-phosphate, respectively. This argues against an ordered mechanism and suggests a random mechanism. Fructose 6-phosphate and Pi were noncompetitive with respect to each other indicating the formation of a dead end complex. These product inhibition relationships are in accord with a Random Bi Bi mechanism.
对溶组织内阿米巴的无机焦磷酸依赖性6-磷酸果糖激酶进行了进一步研究。该酶的分子量约为83,000,其等电点在pH 5.8至6.0之间。探讨了反应对二价阳离子的需求。在生成6-磷酸果糖的方向上,半数最大反应速率需要500 μM镁离子;在生成二磷酸果糖的方向上,8 μM镁离子就足够了。ATP、PPi、多聚磷酸盐、乙酰磷酸盐或氨甲酰磷酸盐不能替代PPi作为将6-磷酸果糖转化为二磷酸果糖的磷酸供体。在生成6-磷酸果糖的方向上,砷酸盐可以替代正磷酸盐。同位素交换研究表明,在没有第三种底物的情况下,Pi与PPi之间或6-磷酸果糖与二磷酸果糖之间几乎不发生或不发生交换。这些发现似乎排除了磷酸酶的形成和平行反应机制。PPi、Pi和二磷酸果糖分别是二磷酸果糖、PPi和6-磷酸果糖的竞争性抑制剂。这与有序机制相悖,提示为随机机制。6-磷酸果糖和Pi彼此之间是非竞争性的,表明形成了一种终产物复合物。这些产物抑制关系符合随机双底物双产物机制。