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大鼠肝脏丙酮酸激酶:配体对活性及1,6-二磷酸果糖结合的影响

Rat liver pyruvate kinase: influence of ligands on activity and fructose 1,6-bisphosphate binding.

作者信息

Blair J B, Walker R G

出版信息

Arch Biochem Biophys. 1984 Jul;232(1):202-13. doi: 10.1016/0003-9861(84)90536-8.

Abstract

The ability for various ligands to modulate the binding of fructose 1,6-bisphosphate (Fru-1,6-P2) with purified rat liver pyruvate kinase was examined. Binding of Fru-1,6-P2 with pyruvate kinase exhibits positive cooperativity, with maximum binding of 4 mol Fru-1,6-P2 per enzyme tetramer. The Hill coefficient (nH), and the concentration of Fru-1,6-P2 giving half-maximal binding [FBP]1/2, are influenced by several factors. In 150 mM Tris-HCl, 70 mM KCl, 11 mM MgSO4 at pH 7.4, [FBP]1/2 is 2.6 microM and nH is 2.7. Phosphoenolpyruvate and pyruvate enhance the binding of Fru-1,6-P2 by decreasing [FBP]1/2. ADP and ATP alone had little influence on Fru-1,6-P2 binding. However, the nucleotides antagonize the response elicited by pyruvate or phosphoenolpyruvate, suggesting that the competent enzyme substrate complex does not favor Fru-1,6-P2 binding. Phosphorylation of pyruvate kinase or the inclusion of alanine in the medium, two actions which inhibit the enzyme activity, result in diminished binding of low concentrations of Fru-1,6-P2 with the enzyme. These effectors do not alter the maximum binding capacity of the enzyme but rather they raise the concentrations of Fru-1,6-P2 needed for maximum binding. Phosphorylation also decreased the nH for Fru-1,6-P2 binding from 2.7 to 1.7. Pyruvate kinase activity is dependent on a divalent metal ion. Substituting Mn2+ for Mg2+ results in a 60% decrease in the maximum catalytic activity for the enzyme and decreases the concentration of phosphoenolpyruvate needed for half-maximal activity from 1 to 0.1 mM. As a consequence, Mn2+ stimulates activity at subsaturating concentrations of phosphoenolpyruvate, but inhibits at saturating concentrations of the substrate or in the presence of Fru-1,6-P2. Both Mg2+ and Mn2+ diminish binding of low concentrations of Fru-1,6-P2; however, the concentrations of the metal ions needed to influence Fru-1,6-P2 binding exceed those needed to support catalytic activity.

摘要

研究了各种配体调节果糖1,6 -二磷酸(Fru-1,6-P2)与纯化的大鼠肝脏丙酮酸激酶结合的能力。Fru-1,6-P2与丙酮酸激酶的结合表现出正协同性,每个酶四聚体的最大结合量为4摩尔Fru-1,6-P2。希尔系数(nH)以及产生半数最大结合量的Fru-1,6-P2浓度[FBP]1/2受多种因素影响。在pH 7.4的150 mM Tris-HCl、70 mM KCl、11 mM MgSO4中,[FBP]1/2为2.6 microM,nH为2.7。磷酸烯醇丙酮酸和丙酮酸通过降低[FBP]1/2增强Fru-1,6-P2的结合。单独的ADP和ATP对Fru-1,6-P2结合影响很小。然而,核苷酸拮抗丙酮酸或磷酸烯醇丙酮酸引发的反应,表明有效的酶底物复合物不利于Fru-1,6-P2结合。丙酮酸激酶的磷酸化或培养基中丙氨酸的加入,这两种抑制酶活性的作用,导致低浓度的Fru-1,6-P2与酶的结合减少。这些效应物不会改变酶的最大结合能力,而是提高最大结合所需的Fru-1,6-P2浓度。磷酸化还使Fru-1,6-P2结合的nH从2.7降至1.7。丙酮酸激酶活性依赖于二价金属离子。用Mn2+替代Mg2+导致该酶的最大催化活性降低60%,并使产生半数最大活性所需的磷酸烯醇丙酮酸浓度从1 mM降至0.1 mM。因此,Mn2+在磷酸烯醇丙酮酸亚饱和浓度下刺激活性,但在底物饱和浓度或存在Fru-1,6-P2时抑制活性。Mg2+和Mn2+都减少低浓度Fru-1,6-P2的结合;然而,影响Fru-1,6-P2结合所需的金属离子浓度超过支持催化活性所需的浓度。

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