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5'-[对-(氟磺酰基)苯甲酰基]腺苷对大肠杆菌甘油激酶的失活作用:水解试剂的保护作用

Inactivation of Escherichia coli glycerol kinase by 5'-[p-(fluorosulfonyl)benzoyl]adenosine: protection by the hydrolyzed reagent.

作者信息

Pettigrew D W

出版信息

Biochemistry. 1987 Mar 24;26(6):1723-7. doi: 10.1021/bi00380a035.

Abstract

Incubation of Escherichia coli glycerol kinase (EC 2.7.1.30; ATP:glycerol 3-phosphotransferase) with 5'-[p-(fluorosulfonyl)benzoyl]adenosine (FSO2BzAdo) at pH 8.0 and 25 degrees C results in the loss of enzyme activity, which is not restored by the addition of beta-mercaptoethanol or dithiothreitol. The FSO2BzAdo concentration dependence of the inactivation kinetics is described by a mechanism that includes the equilibrium binding of the reagent to the enzyme prior to a first-order inactivation reaction in addition to effects of reagent hydrolysis. The hydrolysis of the reagent has two effects on the observed kinetics. The first effect is deviation from pseudo-first-order kinetic behavior due to depletion of the reagent. The second effect is the novel protection of the enzyme from inactivation due to binding of the sulfonate hydrolysis product. The rate constant for the hydrolysis reaction, determined independently from the kinetics of F- release, is 0.021 min-1 under these conditions. Determinations of the reaction stoichiometry with 3H-labeled FSO2BzAdo show that the inactivation is associated with the covalent incorporation of 1.08 mol of reagent/mol of enzyme subunit. Ligand protection experiments show that ATP, AMP, dAMP, NADH, 5'-adenylyl imidodiphosphate, and the sulfonate hydrolysis product of FSO2BzAdo provide protection from inactivation. The protection obtained with ATP is not dependent on Mg2+. Less protection is obtained with glycerol, GMP, etheno-AMP, and cAMP. No protection is obtained with CMP, UMP, TMP, etheno-CMP, GTP, or fructose 1,6-bisphosphate. The results are consistent with modification by FSO2BzAdo of a single adenine nucleotide binding site per enzyme subunit.

摘要

在pH 8.0和25℃条件下,将大肠杆菌甘油激酶(EC 2.7.1.30;ATP:甘油3 - 磷酸转移酶)与5'-[对 -(氟磺酰基)苯甲酰基]腺苷(FSO2BzAdo)一起温育,会导致酶活性丧失,添加β - 巯基乙醇或二硫苏糖醇无法恢复该活性。失活动力学的FSO2BzAdo浓度依赖性由一种机制描述,该机制除了试剂水解的影响外,还包括试剂在一级失活反应之前与酶的平衡结合。试剂的水解对观察到的动力学有两个影响。第一个影响是由于试剂消耗导致偏离假一级动力学行为。第二个影响是由于磺酸盐水解产物的结合对酶起到了新颖的保护作用,使其免于失活。在这些条件下,根据F - 释放动力学独立测定的水解反应速率常数为0.021 min⁻¹。用³H标记的FSO2BzAdo进行反应化学计量学测定表明,失活与每摩尔酶亚基共价掺入1.08摩尔试剂有关。配体保护实验表明,ATP、AMP、dAMP、NADH、5'-腺苷酰亚胺二磷酸以及FSO2BzAdo的磺酸盐水解产物可提供保护以免于失活。ATP提供的保护不依赖于Mg²⁺。甘油、GMP、乙烯基 - AMP和cAMP提供的保护较少。CMP、UMP、TMP、乙烯基 - CMP、GTP或果糖1,6 - 二磷酸则不提供保护。结果与FSO2BzAdo对每个酶亚基的单个腺嘌呤核苷酸结合位点进行修饰一致。

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