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Coordination environment of the active-site metal ion of liver alcohol dehydrogenase.

机译:肝醇脱氢酶活性位点金属离子的配位环境。

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摘要

The coordination environment of the catalytically active metal ion of horse liver alcohol dehydrogenase (alcohol:NAD+ oxidoreductase, EC 1.1.1.1) has been investigated by electron paramagnetic resonance (EPR) methods with use of the active-site-specific Co2+-reconstituted enzyme. The EPR absorption spectrum of the metal-substituted enzyme is characteristic of a rhombically distorted environment. The spectrum of the enzyme--NAD+ complex shows approximate axial symmetry of the metal ion site, indicating that binding of the coenzyme induces a structural alteration in the active-site region. This environment is not significantly altered further by binding of the competitive inhibitor pyrazole. To assign the coordination number of the active-site metal ion, the zero-field splitting was determined on the basis of the temperature dependence of the spin--lattice relaxation of the Co2+ ion. The zero-field splitting energies are approximately 9 cm-1 for the free Co2+-reconstituted enzyme and approximately 46 and approximately 47 cm-1 for the enzyme--NAD+ and enzyme--NAD+--pyrazole complex, respectively. On the basis of studies of structurally defined small molecule complexes, these values are compatible with a tetracoordinate metal ion in the active site of the free enzyme but a pentacoordinate metal ion in the binary enzyme--NAD+ complex and in the ternary enzyme--NAD+--inhibitor complex and, therefore, presumably also in the catalytically active ternary enzyme--NAD+--alcohol complex formed in the course of alcohol oxidation.
机译:已使用活性位点特异性Co2 +重组酶通过电子顺磁共振(EPR)方法研究了马肝醇脱氢酶(酒精:NAD +氧化还原酶,EC 1.1.1.1)的催化活性金属离子的配位环境。金属取代的酶的EPR吸收光谱是菱形扭曲环境的特征。酶-NAD +配合物的光谱显示出金属离子位点的大致轴向对称性,表明辅酶的结合诱导了活性位点区域的结构改变。通过竞争性抑制剂吡唑的结合,不会进一步明显改变这种环境。为了分配活性部位金属离子的配位数,基于Co2 +离子自旋-晶格弛豫的温度依赖性确定了零场分裂。游离Co2 +重组酶的零场分裂能分别约为9 cm-1,酶--NAD +和酶--NAD +-吡唑复合物的零场分裂能分别约为46 cm-1和47 cm-1。在结构定义的小分子复合物的研究基础上,这些值与游离酶活性位点中的四配位金属离子兼容,但与二元酶--NAD +复合物和三元酶--NAD +中的五配位金属离子兼容。 -抑制剂复合物,因此也可能是在醇氧化过程中形成的催化活性三元酶-NAD +-醇复合物中。

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  • 作者

    Makinen, M W; Yim, M B;

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  • 年度 1981
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  • 原文格式 PDF
  • 正文语种 en
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