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糖原磷酸化酶催化糖原合成方向反应的动力学机制:催化过程中AMP与1-磷酸葡萄糖的协同相互作用。

Kinetic mechanism of the glycogen-phosphorylase-catalysed reaction in the direction of glycogen synthesis: co-operative interactions of AMP and glucose 1-phosphate during catalysis.

作者信息

Sergienko E A, Srivastava D K

机构信息

Biochemistry Department, North Dakota State University, Fargo 58105, USA.

出版信息

Biochem J. 1997 Nov 15;328 ( Pt 1)(Pt 1):83-91. doi: 10.1042/bj3280083.

Abstract

We employed our newly developed, continuous, spectrophotometric method [Sergienko and Srivastava (1994) Anal. Biochem. 221, 348-355] for measuring the glycogen-phosphorylase-catalysed reaction in the direction of glycogen synthesis, utilizing varied concentrations of AMP (2-400 microM) and glucose 1-phosphate (G1P; 4 microM to 41 mM). The experimental data revealed that the enzyme catalysis exhibits sigmoidal dependence on both AMP and G1P concentrations, with Hill coefficient and EC50 values (mutually) affected by the concentrations of the above substrates. A detailed kinetic analysis of the substrate-dependent activation, as well as glucose-inhibition data, lead us to propose the following mechanistic features of the glycogen-phosphorylase-catalysed reaction. (1) The enzyme exhibits catalytic activity when two molecules of AMP and two molecules of G1P are bound to the dimeric unit. (2) The binding of one molecule of glucose (the competitive inhibitor of G1P) per dimeric unit results into a complete loss of the enzyme activity. (3) There is no restriction of binding of AMP or G1P when one of the dimeric subunits is already bound with the other ligand. For example, one or two G1P molecules can bind to the enzyme dimer when zero, one or two molecules of AMP are already bound. The magnitudes of rate and equilibrium constants for the glycogen-phosphorylase-catalysed reaction, derived from analyses of the experimental data in the light of a few selected minimal models, are presented.

摘要

我们采用了新开发的连续分光光度法[Sergienko和Srivastava(1994年),《分析生物化学》221卷,第348 - 355页]来测量糖原磷酸化酶催化的糖原合成方向的反应,使用了不同浓度的AMP(2 - 400微摩尔)和葡萄糖1 - 磷酸(G1P;4微摩尔至41毫摩尔)。实验数据表明,酶催化对AMP和G1P浓度均呈现S形依赖性,Hill系数和EC50值(相互)受上述底物浓度的影响。对底物依赖性激活以及葡萄糖抑制数据进行详细的动力学分析后,我们提出了糖原磷酸化酶催化反应的以下机制特征。(1)当两分子AMP和两分子G1P与二聚体单元结合时,酶表现出催化活性。(2)每个二聚体单元结合一分子葡萄糖(G1P的竞争性抑制剂)会导致酶活性完全丧失。(3)当一个二聚体亚基已经与另一种配体结合时,对AMP或G1P的结合没有限制。例如,当已经结合零、一或两分子AMP时,一或两分子G1P可以与酶二聚体结合。本文给出了根据一些选定的最小模型对实验数据进行分析得出的糖原磷酸化酶催化反应的速率常数和平衡常数的大小。

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THE ROLE OF ADENYLIC ACID IN THE ACTIVATION OF PHOSPHORYLASE.腺苷酸在磷酸化酶激活中的作用。
Proc Natl Acad Sci U S A. 1964 Jan;51(1):131-8. doi: 10.1073/pnas.51.1.131.

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