Habison A, Kubicek C P, Röhr M
Biochem J. 1983 Mar 1;209(3):669-76. doi: 10.1042/bj2090669.
Phosphofructokinase (EC 2.7.1.11) from a citric acid-producing strain of Aspergillus niger was partially purified by the application of affinity chromatography on Blue Dextran--Sepharose and the use of fructose 6-phosphate and glycerol as stabilizers in the working buffer. The resulting preparation was still impure, but free of enzyme activities interfering with kinetic investigations. Kinetic studies showed that the enzyme exhibits high co-operativity with fructose 6-phosphate, but shows Michaelis--Menten kinetics with ATP, which inhibits at concentrations higher than those for maximal activity. Citrate and phosphoenolpyruvate inhibit the enzyme; citrate increases the substrate (fructose 6-phosphate) concentration for half-maximal velocity, [S]0.5, and the Hill coefficient, h. The inhibition by citrate is counteracted by NH4+, AMP and phosphate. Among univalent cations tested only NH4+ activates by decreasing the [S]0.5 for fructose 6-phosphate and h, but has no effect on Vmax. AMP and ADP activate at low and inhibit at high concentrations of fructose 6-phosphate, thereby decreasing the [S]0.5 for fructose 6-phosphate. Phosphate has no effect in the absence of citrate. The results indicate that phosphofructokinase from A. niger is a distinct species of this enzyme, with some properties similar to those of the yeast enzyme and in some other properties resembling the mammalian enzyme. The results of determinations of activity at substrate and effector concentrations resembling the conditions that occur in vivo support the hypothesis that the apparent insensitivity of the enzyme to citrate during the accumulation of citric acid in the fungus is due to counteraction of citrate inhibition by NH4+.
通过使用蓝色葡聚糖-琼脂糖亲和层析以及在工作缓冲液中使用6-磷酸果糖和甘油作为稳定剂,对产柠檬酸的黑曲霉菌株中的磷酸果糖激酶(EC 2.7.1.11)进行了部分纯化。所得制剂仍然不纯,但没有干扰动力学研究的酶活性。动力学研究表明,该酶对6-磷酸果糖表现出高度协同性,但对ATP表现出米氏动力学,在高于最大活性浓度时会抑制该酶。柠檬酸和磷酸烯醇丙酮酸会抑制该酶;柠檬酸会增加达到最大反应速度一半时的底物(6-磷酸果糖)浓度[S]0.5以及希尔系数h。柠檬酸的抑制作用可被NH4+、AMP和磷酸盐抵消。在所测试的单价阳离子中,只有NH4+通过降低6-磷酸果糖的[S]0.5和h来激活,但对Vmax没有影响。AMP和ADP在低浓度的6-磷酸果糖时激活,在高浓度时抑制,从而降低6-磷酸果糖的[S]0.5。在没有柠檬酸的情况下,磷酸盐没有作用。结果表明,黑曲霉的磷酸果糖激酶是该酶的一个独特类型,在某些特性上与酵母酶相似,在其他一些特性上与哺乳动物酶相似。在类似于体内发生的条件下测定底物和效应物浓度时的活性结果支持了这样一种假设,即真菌在柠檬酸积累过程中该酶对柠檬酸明显不敏感是由于NH4+对柠檬酸抑制作用的抵消。