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Systems biocatalysis: para-alkenylation of unprotected phenols

机译:系统生物催化:para-alkenylation不受保护的酚类

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Commercially available phenol derivatives were transformed with pyruvate to form a new C-C bond leading to the corresponding para-coumaric acids and only one molecule of water as an innocent side product in buffer. The reaction was catalysed by a biocatalytic system consisting of two enzymatic steps, which were run simultaneously: (i) in the first step catalysed by a tyrosine phenol lyase the C-C coupling of phenol derivatives with pyruvate and ammonia yielded L-tyrosine derivatives, (ii) which were transformed in the second step to the final product via ammonia elimination catalysed by a tyrosine ammonia lyase. The reactions proceeded with exquisite regio- and stereoselectivity yielding just the para-products with the (E)-configuration. The method represents an efficient approach for the direct alkenylation of phenols on a preparative scale (up to 0.6 mmol) affording (E)-para-coumaric acids in excellent isolated yields without requiring chromatographic purification. Co-expression of the involved enzymes in a single host gave access to single catalyst preparation.
机译:商用苯酚衍生物与丙酮酸转化形成新的碳碳键导致相应的para-coumaric酸且只有一个水分子作为一个无辜的产品在缓冲。催化了biocatalytic系统组成的两个酶步骤,运行同时:(i),在第一步催化由酪氨酸酚裂合酶的碳碳耦合与丙酮酸和氨酚衍生品产生酪氨酸衍生物,(ii)在决赛的第二步了产品通过消除氨催化了酪氨酸氨裂解酶。用精致的部位和立体选择性收益率的para-products(E)配置。直接alkenylation有效的方法酚类化合物在制备规模(0.6更易与)提供(E) -para-coumaric酸的孤立的收益率,而无需色谱净化。酶在单个主机访问了单身制备催化剂。

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