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2-氨基硫酚对酵母己糖激酶的失活作用。“半位点”机制的证据。

Inactivation of yeast hexokinase by 2-aminothiophenol. Evidence for a 'half-of-the-sites' mechanism.

作者信息

Puri R N, Roskoski R

机构信息

Department of Biochemistry and Molecular Biology, Louisiana State University Medical Center, New Orleans 70119.

出版信息

Biochem J. 1988 Sep 15;254(3):819-27. doi: 10.1042/bj2540819.

Abstract

Yeast hexokinase is a homodimer consisting of two identical subunits. Yeast hexokinase was inactivated by 2-aminothiophenol at 25 degrees C (pH 9.1). The reaction followed pseudo-first-order kinetics until about 70% of the phosphotransferase activity was lost. About 0.65 mol of 2-aminothiophenol/mol of hexokinase was found to be bound after the 70% loss of the enzyme activity. Completely inactivated hexokinase showed a stoichiometry of about 1 mol of 2-aminothiophenol bound/mol of the enzyme. The evidence obtained from kinetic experiments, stoichiometry of the inactivation reaction and fluorescence emission measurements suggested site-site interaction (weak negative co-operativity) during the inactivation reaction. The approximate rate constants for the reversible binding of 2-aminothiophenol to the first subunit (KI) and for the rate of covalent bond formation with only one site occupied (k3) were 150 microM and 0.046 min-1 respectively. The inactivation reaction was pH-dependent. Dithiothreitol, 2-mercaptoethanol and cysteine restored the phosphotransferase activity of the hexokinase after inactivation by 2-aminothiophenol. Sugar substrates protected the enzyme from inactivation more than did the nucleotides. Thus it is concluded that the inactivation of the hexokinase by 2-aminothiophenol was a consequence of a covalent disulphide bond formation between the aminothiol and thiol function at or near the active site of the enzyme. Hexokinase that had been completely inactivated by 2-aminothiophenol reacted with o-phthalaldehyde. Fluorescence emission intensity of the incubation mixture containing 2-aminothiophenol-modified hexokinase and o-phthalaldehyde was one-half of that obtained from an incubation mixture containing hexokinase and o-phthalaldehyde under similar experimental conditions. The intensity and position of the fluorescence emission maximum of the 2-aminothiophenol-modified hexokinase were different from those of the native enzyme, indicating conformational change following modification. Whereas aliphatic aminothiols were completely ineffective, aromatic aminothiols were good inhibitors of the hexokinase. Cyclohexyl mercaptan weakly inhibited the enzyme. Inhibition of the hexokinase by heteroaromatic thiols was dependent on the nature of the heterocyclic ring and position of the thiol-thione equilibrium. The inhibitory function of a thiol is associated with the following structural characteristics: (a) the presence of an aromatic ring, (b) the presence of a free thiol function and (c) the presence of a free amino function in the close proximity of the thiol function.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

酵母己糖激酶是一种同型二聚体,由两个相同的亚基组成。酵母己糖激酶在25℃(pH 9.1)下被2-氨基硫酚灭活。该反应遵循准一级动力学,直到约70%的磷酸转移酶活性丧失。在酶活性丧失70%后,发现每摩尔己糖激酶结合约0.65摩尔的2-氨基硫酚。完全失活的己糖激酶显示出约1摩尔2-氨基硫酚与每摩尔酶结合的化学计量关系。从动力学实验、失活反应的化学计量关系和荧光发射测量获得的证据表明,失活反应过程中存在位点间相互作用(弱负协同性)。2-氨基硫酚与第一个亚基可逆结合的近似速率常数(KI)和仅一个位点被占据时共价键形成的速率常数(k3)分别为150 microM和0.046 min-1。失活反应依赖于pH值。二硫苏糖醇、2-巯基乙醇和半胱氨酸可使被2-氨基硫酚灭活后的己糖激酶的磷酸转移酶活性恢复。糖类底物比核苷酸更能保护该酶不被灭活。因此得出结论,2-氨基硫酚使己糖激酶失活是氨基硫醇与酶活性位点或其附近的硫醇功能之间形成共价二硫键的结果。被2-氨基硫酚完全失活的己糖激酶与邻苯二甲醛反应。在类似实验条件下,含有2-氨基硫酚修饰的己糖激酶和邻苯二甲醛的孵育混合物的荧光发射强度是含有己糖激酶和邻苯二甲醛的孵育混合物的一半。2-氨基硫酚修饰的己糖激酶荧光发射最大值的强度和位置与天然酶不同,表明修饰后构象发生了变化。脂肪族氨基硫醇完全无效,而芳香族氨基硫醇是己糖激酶的良好抑制剂。环己硫醇对该酶有微弱抑制作用。杂环芳香硫醇对己糖激酶的抑制作用取决于杂环的性质和硫醇-硫酮平衡的位置。硫醇的抑制功能与以下结构特征有关:(a)存在芳香环,(b)存在游离硫醇功能,(c)硫醇功能附近存在游离氨基功能。(摘要截断于400字)

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本文引用的文献

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Tissue sulfhydryl groups.组织巯基
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