Serdakowski Anne L, Munir Inmar Z, Dordick Jonathan S
Department of Biology, Rensselaer Polytechnic Institute, Troy, New York 12180, USA.
J Am Chem Soc. 2006 Nov 8;128(44):14272-3. doi: 10.1021/ja0660150.
Enzymes are shown to function in nonaqueous media; however, relatively little information is available on the influence of the organic solvent as well as its associated water content on the properties of the enzymatic transition states. A better understanding of these effects will be useful in developing kinetic models that can then be used to predict optimal solvent and substrate choices for enzymatic reactions in organic media. The influence of the reaction media on soybean peroxidase-catalyzed oxidation of para-substituted phenols was studied using Hammett analysis for several organic solvent systems. The catalytic activity and substrate specificity of the enzyme are influenced by the nature of the solvent and its associated hydration. These findings may allow one to draw conclusions about the reaction mechanism and the roles of solvent and solvent hydration on enzyme function.
已证明酶在非水介质中发挥作用;然而,关于有机溶剂及其相关含水量对酶促过渡态性质的影响,可获取的信息相对较少。更好地理解这些效应将有助于开发动力学模型,进而用于预测有机介质中酶促反应的最佳溶剂和底物选择。使用哈米特分析研究了几种有机溶剂体系中反应介质对大豆过氧化物酶催化对取代酚氧化的影响。酶的催化活性和底物特异性受溶剂性质及其相关水合作用的影响。这些发现可能使人们能够得出关于反应机制以及溶剂和溶剂水合作用对酶功能的作用的结论。