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Triosephosphate isomerase as a mechanistic model for utilization of binding energy in enzyme catalysis: Activation and inhibition studies.

机译:磷酸三磷酸异构酶是在酶催化中利用结合能的机制模型:活化和抑制研究。

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摘要

Triosephosphate isomerase (TIM) has been demonstrated to be a prototypical example of enzymes utilizing substrate intrinsic binding energy to promote transition state stabilization of the catalyzed reactions. Values of ( kcat/Km)GAP for TIM-catalyzed reactions of (R)-glyceraldehyde 3-phosphate and kcat/KHPi KGA for reactions of the substrate pieces glycolaldehyde and HPO32- have been determined for wildtype and more than 10 different strategically designed mutants. A linear logarithmic correlation, with a slope of 1.04 +/- 0.03, indicates that the transition states for the two sets of reactions are stabilized by similar interactions with the protein catalyst. This is consistent with a role for dianions as active spectators that hold TIM in a catalytically active caged form.;Using phosphite activation as a mechanistic probe, it is possible to dissect the effect of certain mutations into two aspects: the effect on the reactivity of the active conformation of TIM, and the effect on the utilization of the phospho-intrinsic binding energy for catalysis. We have shown that the protein has an architecture that separates the dianion activation site and the catalytic site, so that it is possible to perturb one while leaving the other intact. We also studied the effects of these mutations on the pH-dependence of phosphoglycolate (PGA) inhibition of TIM-catalyzed isomerization of GAP, which allows us to determine the effect of the mutations on the basicity of the catalytic base Glu165/167 in the active conformation of TIM. The correlation between the second-order rate constants of GAP and the inhibition constants of PGA shows that the binding of PGA to TIM mimics the structure of the transition state of the TIM- catalyzed reaction of GAP.
机译:磷酸三糖异构酶(TIM)已被证明是利用底物固有结合能来促进催化反应的过渡态稳定的酶的典型例子。已经确定(kcat / Km)GAP对于TIM催化的3-磷酸甘油醛(R)和Kcat / KHPi KGA对于底物乙醇醛和HPO32-的反应的野生型值和十多个不同的策略设计突变体。线性对数相关性具有1.04 +/- 0.03的斜率,表明两组反应的过渡态通过与蛋白质催化剂的相似相互作用而得以稳定。这与二价阴离子作为将TIM保持为催化活性的笼状形式的活跃观众的作用是一致的;使用亚磷酸酯活化作为机械探针,可以将某些突变的影响分解为两个方面:对三聚体的反应性的影响。 TIM的活性构象,以及对磷酸内在结合能的利用效率的影响。我们已经表明,该蛋白质具有将二价阴离子激活位点和催化位点分开的结构,因此可以干扰一个,同时保持另一个不变。我们还研究了这些突变对TIM催化的GAP异构化的磷酸乙醇酸(PGA)抑制的pH依赖性的影响,这使我们能够确定突变对活性成分中催化碱基Glu165 / 167碱性的影响。 TIM的构象。 GAP的二阶速率常数与PGA的抑制常数之间的相关性表明,PGA与TIM的结合模仿了TIM催化的GAP反应的过渡态结构。

著录项

  • 作者

    Zhai, Xiang.;

  • 作者单位

    State University of New York at Buffalo.;

  • 授予单位 State University of New York at Buffalo.;
  • 学科 Chemistry Biochemistry.;Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 219 p.
  • 总页数 219
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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