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Dynamic Kinetic Resolutions and Asymmetric Transformations by Enzyme-Metal Combo Catalysis

机译:酶-金属组合催化的动态动力学拆分和不对称转化

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Enzyme-metal combo catalysis is described as a useful methodology for the synthesis of optically active compounds. The key point of the method is the use of enzyme and metal in combination as the catalysts for the complete transformation of racemic substrates to single enantiomeric products through dynamic kinetic resolution (DKR). In this approach, enzyme acts as an enantioselective resolving catalyst and metal does as a racemizing catalyst for the efficient DKR. Three kinds of enzyme-metal combinations - lipase-ruthenium, subtilisin-ruthenium, and lipase-palladium ? have been developed as the catalysts for the DKRs of racemic alcohols, esters, and amines. The scope of the combination catalysts can be extended to the asymmetric transformations of ketones, enol acetates, and ketoximes via the DKRs. In most cases studied, enzyme-metal combo catalysis provided enantiomerically-enriched products in high yields.
机译:酶-金属组合催化被描述为合成光学活性化合物的有用方法。该方法的关键是结合使用酶和金属作为催化剂,通过动态动力学拆分(DKR)将外消旋底物完全转化为单一对映体产物。在这种方法中,酶充当对映选择性拆分催化剂,金属充当高效DKR的外消旋催化剂。三种酶-金属组合-脂肪酶-钌,枯草杆菌蛋白酶-钌和脂肪酶-钯已开发出外消旋醇,酯和胺的DKR催化剂。组合催化剂的范围可以通过DKR扩展到酮,烯醇乙酸酯和酮肟的不对称转化。在大多数研究的案例中,酶-金属组合催化以高收率提供了对映体富集的产品。

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