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首页> 外文期刊>Advanced synthesis & catalysis >Enantioselective Bio-Hydrolysis of Various Racemic and meso Aromatic Epoxides Using the Recombinant Epoxide Hydrolase Kau2
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Enantioselective Bio-Hydrolysis of Various Racemic and meso Aromatic Epoxides Using the Recombinant Epoxide Hydrolase Kau2

机译:使用重组环氧水解酶Kau2对各种外消旋和内消旋芳族环氧化合物进行对映选择性生物水解

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Epoxide hydrolase Kau2 overexpressed in Escherichia coli RE3 has been tested with ten different racemic and meso alpha,beta-disubstituted aromatic epoxides. Some of the tested substrates were bi-functional, and most of them are very useful building blocks in synthetic chemistry applications. As a general trend Kau2 proved to be an extremely enantioselective biocatalyst, the diol products and remaining epoxides of the bioconversions being obtained - with two exceptions - in nearly enantiomerically pure form. Furthermore, the reaction times were usually very short (around 1 h, except when stilbene oxides were used), and the use of organic co-solvents was well tolerated, enabling very high substrate concentrations (up to 75 g/L) to be reached. Even extremely sterically demanding epoxides such as cis- and trans-stilbene oxides were transformed on a reasonable time scale. All reactions were successfully conducted on a 1 g preparative scale, generating diol-and epoxide-based chiral synthons with very high enantiomeric excesses and isolated yields close to the theoretical maximum. Thus we have here demonstrated the usefulness and versatility of lyophilized Escherichia coli cells expressing Kau2 epoxide hydrolase as a highly enantioselective biocatalyst for accessing very valuable optically pure aromatic epoxides and diols through kinetic resolution of racemates or desymmetrization of meso epoxides.
机译:已在大肠杆菌RE3中过表达的环氧水解酶Kau2与十种不同的外消旋和内消旋的α,β-二取代芳族环氧化物进行了测试。一些测试的底物是双功能的,其中大多数是合成化学应用中非常有用的基础。普遍的趋势是,Kau2被证明是一种对映体选择性极强的生物催化剂,除了近乎对映体纯净的形式外,还获得了生物转化的二醇产物和剩余的环氧化物(有两个例外)。此外,反应时间通常很短(大约1小时,使用二氧化二苯乙烯时除外),并且有机共溶剂的使用被很好地耐受,从而可以达到很高的底物浓度(最高75 g / L)。 。甚至在空间上要求极高的环氧化物,例如顺式和反式二苯乙烯氧化物也都可以在合理的时间范围内转化。所有反应均以1 g的制备规模成功进行,生成了对映体过量非常高且分离出的收率接近理论最大值的基于二醇和环氧化物的手性合成子。因此,我们在这里证明了表达Kau2环氧化物水解酶的冻干大肠杆菌细胞作为高对映选择性生物催化剂的用途和多功能性,可通过外消旋物的动力学拆分或中观环氧化物的不对称化获得非常有价值的光学纯芳族环氧化物和二醇。

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