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酵母鸟苷酸激酶的动力学和热力学特性

Kinetic and thermodynamic characterizations of yeast guanylate kinase.

作者信息

Li Y, Zhang Y, Yan H

机构信息

Department of Biochemistry, Michigan State University, East Lansing, Michigan 48824, USA.

出版信息

J Biol Chem. 1996 Nov 8;271(45):28038-44. doi: 10.1074/jbc.271.45.28038.

Abstract

Yeast guanylate kinase was expressed at high level in Escherichia coli using pET-17b vector. It was purified to homogeneity by a simple two-column procedure with an average yield of approximately 100 mg/liter. The steady-state kinetic parameters for both forward and reverse reactions were determined by initial velocity measurements. The turnover numbers (kcat) were 394 s-1 for the forward reaction (formation of ADP and GDP) and 90 s-1 for the reverse reaction (formation of ATP and GMP). Km values were 0.20, 0. 091, 0.017, and 0.097 mM for MgATP, GMP, MgADP, and GDP, respectively. Analysis of the initial velocity patterns indicated a sequential mechanism. GMP was found to have partial substrate inhibition. The substrate inhibition was not competitive with MgATP and could be attributed to formation of the abortive complex guanylate kinase.MgADP.GMP. The equilibrium constant of the reaction was measured under various conditions by NMR and a radiometric assay. The results showed that the steady-state kinetic parameters were consistent with the thermodynamic constant. NMR titration and equilibrium dialysis showed that both substrates and products could bind to free guanylate kinase. The dissociation constants were 0.090, 0.18, 0.029, 0.084, and 0.12 mM for MgATP, ATP, GMP, MgADP, and GDP, respectively. Viscosity-dependent kinetics was used to identify the rate-limiting steps of the reaction. The results indicated that the reaction rate is largely controlled by the chemical step.

摘要

利用pET - 17b载体在大肠杆菌中高水平表达酵母鸟苷酸激酶。通过简单的两步柱层析法将其纯化至同质,平均产量约为100毫克/升。通过初速度测量确定正向和反向反应的稳态动力学参数。正向反应(生成ADP和GDP)的周转数(kcat)为394 s-1,反向反应(生成ATP和GMP)的周转数为90 s-1。MgATP、GMP、MgADP和GDP的Km值分别为0.20、0.091、0.017和0.097毫摩尔。对初速度模式的分析表明是顺序机制。发现GMP具有部分底物抑制作用。底物抑制与MgATP不具有竞争性,可归因于无效复合物鸟苷酸激酶·MgADP·GMP的形成。通过核磁共振和放射性测定法在各种条件下测量反应的平衡常数。结果表明稳态动力学参数与热力学常数一致。核磁共振滴定和平衡透析表明底物和产物均可与游离鸟苷酸激酶结合。MgATP、ATP、GMP、MgADP和GDP的解离常数分别为0.090、0.18、0.029、0.084和0.12毫摩尔。利用粘度依赖性动力学确定反应的限速步骤。结果表明反应速率在很大程度上受化学步骤控制。

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