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首页> 外文期刊>Biochemistry >Thermodynamics of a transition state analogue inhibitor binding to Escherichia coli chorismate mutase: Probing the charge state of an active site residue and its role in inhibitor binding and catalysis
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Thermodynamics of a transition state analogue inhibitor binding to Escherichia coli chorismate mutase: Probing the charge state of an active site residue and its role in inhibitor binding and catalysis

机译:过渡态类似物抑制剂与大肠杆菌分支氨酸突变酶结合的热力学:探测活性位点残基的电荷状态及其在抑制剂结合和催化中的作用

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Electrostatic interactions play important roles in the catalysis of chorismate to prephenate by chorismate mutase. Mutation of Gln88 to glutamate in the monofunctional chorismate mutase from Escherichia coli results in an enzyme with a pH profile of activity significantly different from that of the wild type protein. To investigate whether the mutation alters the substrate binding process or the catalysis, we have directly determined the thermodynamic parameters of a transition state analogue inhibitor binding to the wild-type chorismate mutase and its Q88E mutant using isothermal titration calorimetry. The results demonstrate that solvent reorganization and hydrophobic interactions contribute the predominant free energy to inhibitor binding. The charge state of Glu88 in the Q88E mutant was experimentally determined and was shown to be protonated at pH 4.5 and ionized at pH 7.8, consistent with earlier hypotheses. Most surprisingly, inhibitor binding energetics do not exhibit significant pH dependency for both enzymes. Our findings indicate that the charge state of Glu88 has a small impact on inhibitor binding but plays an important role in the catalytic process. [References: 27]
机译:静电相互作用在分支酸变酶催化分支酸成苯甲酸酯中起重要作用。在来自大肠杆菌的单功能分支酸突变体中,Gln88突变为谷氨酸,产生的酶的pH值活性与野生型蛋白显着不同。为了研究突变是否改变了底物结合过程或催化作用,我们使用等温滴定热法直接确定了与野生型分支酸突变体及其Q88E突变体结合的过渡态类似物抑制剂的热力学参数。结果表明,溶剂重组和疏水性相互作用将主要的自由能贡献给抑制剂结合。通过实验确定了Q88E突变体中Glu88的电荷状态,并显示其在pH 4.5时质子化并在pH 7.8时电离,这与先前的假设一致。最令人惊讶的是,抑制剂结合能对于两种酶都没有表现出明显的pH依赖性。我们的发现表明,Glu88的电荷状态对抑制剂的结合影响很小,但在催化过程中起着重要作用。 [参考:27]

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