首页> 外文期刊>ACS catalysis >Enantioselective Hydrolysis of Racemic and Meso-Epoxides with Recombinant Escherichia coli Expressing Epoxide Hydrolase from Sphingomonas sp. HXN-200: Preparation of Epoxides and Vicinal Diols in High ee and High Concentration
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Enantioselective Hydrolysis of Racemic and Meso-Epoxides with Recombinant Escherichia coli Expressing Epoxide Hydrolase from Sphingomonas sp. HXN-200: Preparation of Epoxides and Vicinal Diols in High ee and High Concentration

机译:表达鞘氨醇单胞菌种的环氧水解酶的重组大肠杆菌的外消旋和内消旋环氧化合物的对映选择性水解。 HXN-200:高ee高浓度环氧化合物和邻苯二甲酸二酯的制备

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A unique epoxide hydrolase (SpEH) from Sphingomonas sp. HXN-200 was identified and cloned based on genome sequencing and expressed in Escherichia coli. The engineered E. coli (SpEH) showed the same selectivity and substrate specificity as the wild type strain and 172 times higher activity than Sphingomonas sp. HXN-200 for the hydrolysis of styrene oxide 1. Hydrolysis of racemic styrene oxide 1, substituted styrene oxides 3, 5?7, and Nphenoxycarbonyl- 3,4-epoxypiperidine 8 (200?100 mM) with resting cells of E. coli (SpEH) gave (S)-epoxides 1, 3, 5?7 and (?)-8 in 98.0?99.5% enantiomeric excess (ee) and 37.6? 46.5% yield. Hydrolysis of cyclopentene oxide 9, cyclohexene oxide 10, and N-benzyloxycarbonyl-3,4-epoxypyrrolidine 11 (100 mM) afforded the corresponding (R, R)-vicinal trans-diols 12?14 in 86?93% ee and 90?99% yield. The ee of (1R, 2R)- cyclohexane-1,2-diol 13 was improved to 99% by simple crystallization. These biotransformations showed high specific activity (0.28?4.3 U/mg cdw), product concentration, product/cells ratio, and cell-based productivity. Hydrolysis at even higher substrate concentration was also achieved: (S)-1 was obtained in 430 mM (51 g/Lorg) and 43% yield; (1R, 2R)-13 was obtained in 500 mM (58 g/L) and >99% yield. Gram-scale preparation of epoxides (S)-1, (S)-3, (S)-6 and diols (1R, 2R)-12, (1R, 2R)-13, (3R, 4R)-14 were also demonstrated. E. coli (SpEH) cells showed the highest enantioselectivity to produce (S)-1 (E of 39) among all known EHs in the form of whole cells or free enzymes and the highest enantioselectivities to produce (S)-3, 5, 6, 7, (?)-8, and (R, R)-14 (E of 36, 35, 28, 57, 22, and 28) among all known EHs. The easily available and highly active E. coli (SpEH) cells are the best biocatalysts known thus far for the practical preparation of these useful and valuable enantiopure epoxides and vicinal diols via hydrolysis.
机译:鞘氨醇单胞菌(Sphingomonas sp。)的独特的环氧水解酶(SpEH)。根据基因组测序鉴定并克隆了HXN-200,并在大肠杆菌中表达。改造后的大肠杆菌(SpEH)与野生型菌株表现出相同的选择性和底物特异性,其活性是鞘氨醇单胞菌sp。的172倍。 HXN-200用于水解苯乙烯氧化物1.用大肠杆菌的静止细胞水解外消旋苯乙烯氧化物1,取代的苯乙烯氧化物3、5?7和Nphenoxy羰基-3,4-环氧哌啶8(200?100 mM)。 SpEH)产生98.0-99.5%对映体过量(ee)和37.6?3的(S)-环氧化合物1、3、5-7和(-8)-8。产率46.5%。水解环戊烯氧化物9,环己烯氧化物10和N-苄氧基羰基-3,4-环氧吡咯烷11(100 mM),得到相应的(R,R)-邻位反式二元醇12-14在86-93%ee和90-ee中。产率99%。通过简单的结晶将(1R,2R)-环己烷-1,2-二醇13的ee提高到99%。这些生物转化显示出高的比活(0.28-4.3U / mg cdw),产物浓度,产物/细胞比和基于细胞的生产率。在更高的底物浓度下也可以实现水解:(S)-1以430 mM(51 g / Lorg)的产率和43%的产率获得;以500 mM(58 g / L)和> 99%的产率获得(1R,2R)-13。环氧(S)-1,(S)-3,(S)-6和二醇(1R,2R)-12,(1R,2R)-13,(3R,4R)-14的克级制备演示。在所有已知的以全细胞或游离酶形式存在的EH中,大肠杆菌(SpEH)细胞显示出最高的对映选择性,产生(S)-1(39个中的E),并且产生(S)-3、5、5的对映选择性最高。 6、7,(?)-8和(R,R)-14(36、35、28、57、22和28中的E)。易于获得的高活性大肠杆菌(SpEH)细胞是迄今为止通过水解实际制备这些有用和有价值的对映纯环氧化物和邻二醇的最佳生物催化剂。

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