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Redesign of a Phenylalanine Aminomutase into a Phenylalanine Ammonia Lyase

机译:将苯丙氨酸氨基氨基重新设计成苯丙氨酸氨裂解酶

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摘要

An aminomutase, naturally catalyzing the interconversion of (S)--phenylalanine and (R)--phenylalanine, was converted into an ammonia lyase catalyzing the nonoxidative deamination of phenylalanine to cinnamic acid by a rational single-point mutation. It could be shown by crystal structures and kinetic data that the flexibility of the lid that covers the active site decides whether the enzyme acts as a lyase or a mutase. An Arg92Ser mutation destabilized the closed conformation of the lid structure and converted the mutase into a lyase that exhibited up to 44-fold increased reaction rates in the enantioselective deamination of (R)--phenylalanine. In addition, the amination rates of cinnamic acid yielding optically pure (S)-- and (R)--phenylalanine were doubled. The applicability of the mutant enzyme for kinetic resolution and asymmetric amination could be shown by biocatalysis on a preparative scale.
机译:通过合理的单点突变将氨基溶液转化为氨催化酶对苯丙氨酸至肉桂酸酯的氨催化酶的氨催化酶的氨基酶。 可以通过晶体结构和动力学数据示出,即覆盖活性位点的盖子的柔韧性决定酶是否用作裂解酶或异种酶。 ARG92SER突变破坏了盖结构的闭合构象,并将蛋白转化为裂解酶,其在(R) - 苯丙氨酸的对映选择性脱氨基中显示出高达44倍的反应速率。 此外,肉桂酸产生光学纯净(S) - 和(R) - 苯丙氨酸的胺化速率加倍。 突变酶对动力学分辨率和不对称胺化的适用性可以通过生物分析对制备规模显示。

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