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首页> 外文期刊>Angewandte Chemie >Improved Cyclopropanation Activity of Histidine-Ligated Cytochrome P450 Enables the Enantioselective Formal Synthesis of Levomilnacipran
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Improved Cyclopropanation Activity of Histidine-Ligated Cytochrome P450 Enables the Enantioselective Formal Synthesis of Levomilnacipran

机译:组氨酸连接的细胞色素P450的改进环丙烷化活性使左旋米那普仑的对映选择性形式合成成为可能。

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摘要

Engineering enzymes capable of modes of activation unprecedented in nature will increase the range of industrially important molecules that can be synthesized through biocatal-ysis. However, low activity for a new function is often a limitation in adopting enzymes for preparative-scale synthesis, reaction with demanding substrates, or when a natural substrate is also present. By mutating the proximal ligand and other key active-site residues of the cytochrome P450 enzyme from Bacillus megaterium (P450-BM3), a highly active His-ligated variant of P450-BM3 that can be employed for the enantioselective synthesis of the levomilnacipran core was engineered. This enzyme, BM3-Hstar, catalyzes the cyclopropanation of N,N-diethyl-2-phenylacrylamide with an estimated initial rate of over 1000 turnovers per minute and can be used under aerobic conditions. Cyclopropanation activity is highly dependent on the electronic properties of the P450 proximal ligand, which can be used to tune this non-natural enzyme activity.
机译:具有自然界前所未有的激活模式的工程酶将增加可通过生物催化合成的工业上重要分子的范围。但是,对于新功能的低活性通常是在采用酶进行制备规模合成,与要求的底物反应或还存在天然底物时受到限制。通过突变巨大芽孢杆菌(P450-BM3)的细胞色素P450酶的近端配体和其他关键的活性位点残基,可用于对映选择性合成左旋半乳核核心的高活性His连接的P450-BM3变异体工程。这种酶BM3-Hstar催化N,N-二乙基-2-苯基丙烯酰胺的环丙烷化反应,估计初始速率超过每分钟1000次周转,可在有氧条件下使用。环丙烷化活性高度依赖于P450近端配体的电子特性,可用于调节这种非天然酶的活性。

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