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人红细胞磷酸果糖激酶的自我缔合。依赖于酶浓度和缔合模式的动力学行为。

Self-association of human erythrocyte phosphofructokinase. Kinetic behaviour in dependence on enzyme concentration and mode of association.

作者信息

Wenzel K W, Kurganov B I, Zimmermann G, Yakovlev V A, Schellenberger W, Hofmann E

出版信息

Eur J Biochem. 1976 Jan 2;61(1):181-90. doi: 10.1111/j.1432-1033.1976.tb10010.x.

Abstract

The kinetic behaviour of human erythrocyte phosphofructokinase has been analyzed over a relative wide range of enzyme concentration (0.01 -- 1.7 mug/ml). The kinetic cooperativity which becomes apparent when the enzymic reaction rate is plotted versus the fructose 6-phosphate concentration decreases with increasing enzyme concentration. Simultaneously, a decrease of the half-saturation concentration for fructose 6-phosphate [S]0.5 is observed. Maximum velocity passes through a maximum at increasing enzyme concentrations. Sets of curves representing specific enzymic activity of phosphofructokinase versus enzyme concentration obtained at various fixed concentrations of fructose 6-phosphate and ATP are analyzed. The shapes of these curves are interpreted in terms of an association model of human erythrocyte phosphofructokinase, in which an inactive dimer (Mr 190000) and active multimers of the dimeric form are involved. The conclusion is drawn that the sigmoidal shape of the plots of the enzymic reaction rate versus fructose 6-phosphate concentration is partially caused by a displacement of the equilibrium between different states of association of phosphofructokinase to multimers by this substrate. On the other hand, the inhibition of the enzyme by high concentrations of ATP may be partially caused by a shift of this equilibrium to the state of the inactive dimer.

摘要

已在相对较宽的酶浓度范围(0.01 -- 1.7微克/毫升)内分析了人红细胞磷酸果糖激酶的动力学行为。当将酶促反应速率与6-磷酸果糖浓度作图时,明显的动力学协同性随酶浓度增加而降低。同时,观察到6-磷酸果糖的半饱和浓度[S]0.5降低。最大速度在酶浓度增加时经过一个最大值。分析了在各种固定的6-磷酸果糖和ATP浓度下获得的表示磷酸果糖激酶比活性与酶浓度关系的几组曲线。这些曲线的形状根据人红细胞磷酸果糖激酶的缔合模型来解释,其中涉及无活性二聚体(Mr 190000)和二聚体形式的活性多聚体。得出的结论是,酶促反应速率与6-磷酸果糖浓度作图的S形部分是由该底物使磷酸果糖激酶不同缔合状态之间的平衡发生位移引起的。另一方面,高浓度ATP对该酶的抑制可能部分是由于这种平衡向无活性二聚体状态的转变所致。

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