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大鼠肝脏6-磷酸果糖-2-激酶/果糖-2,6-二磷酸酶:一种独特的双功能酶。

Rat hepatic 6-phosphofructo 2-kinase/fructose 2,6-bisphosphatase: a unique bifunctional enzyme.

作者信息

Pilkis S J, Chrisman T, Burgress B, McGrane M, Colosia A, Pilkis J, Claus T H, el-Maghrabi M R

出版信息

Adv Enzyme Regul. 1983;21:147-73. doi: 10.1016/0065-2571(83)90013-4.

Abstract

Fructose 2,6-bisphosphate is a potent allosteric activator of 6-phosphofructo 1-kinase and an inhibitor of fructose 1,6-bisphosphatase. It potentiates the effect of AMP on both enzymes. A great deal of compelling evidence supports the hypothesis that fructose 2,6-bisphosphate plays a key role in the hormonal and substrate regulation of substrate cycling at the fructose 6-phosphate/fructose 1,6-bisphosphate level in liver. This regulation is exerted at the level of the enzyme activities responsible for the synthesis and degradation of fructose 2,6-bisphosphate. Synthesis of the compound is catalyzed by a unique enzyme which transfers the gamma-phosphate of ATP to the C2 position of fructose 6-phosphate (ATP:D fructose 6-phosphate 2-phosphotransferase) while degradation is catalyzed by a phosphohydrolase activity which is specific for the C-2 position of fructose 2,6-bisphosphate (D-fructose 2,6-bisphosphate 2-phosphohydrolase). These activities are distinct from the classical 6-phosphofructo 1-kinase and fructose 1,6-bisphosphatase with regard to molecular weight, interaction with ligands, and the efficiency with which phosphoryl transfer occurs. Both activities have been purified to homogeneity and have been shown to be present in a single enzyme protein, i.e. the enzyme is bifunctional. Incubation of the 6-phosphofructo 2-kinase/fructose 2,6-bisphosphatase with cAMP-dependent protein kinase and ATP leads to phosphorylation of the enzyme resulting in inactivation of the phosphotransferase activity and stimulation of the phosphohydrolase activity. Since fructose 2,6-bisphosphate is not further metabolized and can only be recycled to fructose 6-phosphate, simultaneous modulation of the synthesis and degradation of the compound by covalent modification of a single protein provides a very efficient and sensitive regulatory mechanism. The bifunctional enzyme was also shown to possess an ATPase activity which was nearly equal to the activity of the kinase reaction. However, in the presence of fructose 6-phosphate the enzyme did not transfer phosphate to water but rather to the C-2 position of the phosphorylated sugar. The ability of the enzyme to catalyze a partial reaction at a rate nearly equal to that of the forward reaction suggested that the reaction mechanism of the kinase proceeds by a two step transfer, i.e. via a phosphoryl enzyme intermediate.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

果糖2,6 -二磷酸是6 -磷酸果糖-1 -激酶的一种强有力的别构激活剂,也是果糖1,6 -二磷酸酶的抑制剂。它能增强AMP对这两种酶的作用。大量令人信服的证据支持这样一种假说,即果糖2,6 -二磷酸在肝脏中果糖6 -磷酸/果糖1,6 -二磷酸水平的底物循环的激素和底物调节中起关键作用。这种调节作用是在负责果糖2,6 -二磷酸合成和降解的酶活性水平上发挥的。该化合物的合成由一种独特的酶催化,这种酶将ATP的γ -磷酸基团转移到果糖6 -磷酸的C2位(ATP:D -果糖6 -磷酸2 -磷酸转移酶),而降解则由一种对果糖2,6 -二磷酸的C - 2位具有特异性的磷酸水解酶活性催化(D -果糖2,6 -二磷酸2 -磷酸水解酶)。就分子量、与配体的相互作用以及磷酸转移发生的效率而言,这些活性与经典的6 -磷酸果糖-1 -激酶和果糖1,6 -二磷酸酶不同。这两种活性都已被纯化至均一,并且已证明它们存在于单一的酶蛋白中,即该酶是双功能的。将6 -磷酸果糖-2 -激酶/果糖2,6 -二磷酸酶与cAMP依赖性蛋白激酶和ATP一起孵育会导致该酶磷酸化,从而使磷酸转移酶活性失活并刺激磷酸水解酶活性。由于果糖2,6 -二磷酸不会进一步代谢,只能再循环为果糖6 -磷酸,通过对单一蛋白质进行共价修饰同时调节该化合物的合成和降解提供了一种非常有效且灵敏的调节机制。还显示该双功能酶具有一种ATP酶活性,其活性几乎与激酶反应的活性相当。然而,在果糖6 -磷酸存在的情况下,该酶不会将磷酸基团转移到水中,而是转移到磷酸化糖的C - 2位。该酶以几乎与正向反应速率相等的速率催化部分反应的能力表明,激酶的反应机制是通过两步转移进行的,即通过磷酸化酶中间体。(摘要截断于400字)

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