首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Artificial metalloenzymes based on biotin-avidin technology for the enantioselective reduction of ketones by transfer hydrogenation
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Artificial metalloenzymes based on biotin-avidin technology for the enantioselective reduction of ketones by transfer hydrogenation

机译:基于生物素-亲和素技术的人工金属酶,用于通过转移氢化对映体选择性还原酮

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摘要

Most physiological and biotechnological processes rely on molecular recognition between chiral (handed) molecules. Manmade homogeneous catalysts and enzymes offer complementary means for producing enantiopure (single-handed) compounds. As the subtle details that govern chiral discrimination are difficult to predict, improving the performance of such catalysts often relies on trial-and-error procedures. Homogeneous catalysts are optimized by chemical modification of the chiral environment around the metal center. Enzymes can be improved by modification of gene encoding the protein. Incorporation of a biotinylated orga-nometallic catalyst into a host protein (avidin or streptavidin) affords versatile artificial metalloenzymes for the reduction of ketones by transfer hydrogenation. The boric acid-formate mixture was identified as a hydrogen source compatible with these artificial metalloenzymes. A combined chemo-genetic procedure allows us to optimize the activity and selectivity of these hybrid catalysts: up to 94% (R) enantiomeric excess for the reduction of p-methy-lacetophenone. These artificial metalloenzymes display features reminiscent of both homogeneous catalysts and enzymes.
机译:大多数生理和生物技术过程都依赖于手性(递递)分子之间的分子识别。人造均相催化剂和酶为生产对映纯(单手)化合物提供了补充手段。由于难以预测控制手性歧视的细微细节,因此提高此类催化剂的性能通常取决于反复试验程序。通过化学修饰金属中心周围的手性环境,可以优化均相催化剂。可以通过修饰编码蛋白质的基因来改善酶。将生物素化的有机金属非金属催化剂掺入宿主蛋白(抗生物素蛋白或抗生蛋白链菌素)可提供通用的人工金属酶,用于通过转移氢化来还原酮。硼酸-甲酸酯混合物被鉴定为与这些人造金属酶相容的氢源。组合的化学生成程序使我们能够优化这些杂化催化剂的活性和选择性:最多可减少94%(R)对映异构体,以还原对甲基甲基-内苯甲酮。这些人造金属酶的展示使人联想到均相催化剂和酶。

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