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首页> 外文期刊>RSC Advances >Efficient synthesis of Ibrutinib chiral intermediate in high space-time yield by recombinant E. coli co-expressing alcohol dehydrogenase and glucose dehydrogenase
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Efficient synthesis of Ibrutinib chiral intermediate in high space-time yield by recombinant E. coli co-expressing alcohol dehydrogenase and glucose dehydrogenase

机译:重组大肠杆菌共表达乙醇脱氢酶和葡萄糖脱氢酶高空时产率高效合成依鲁替尼手性中间体

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摘要

The production of ( S )- N -boc-3-hydroxy piperidine (NBHP) via asymmetric bioreduction of 1-boc-3-piperidinone with reductase is impeded by the need for expensive coenzymes NAD(P)H. In order to regenerate the coenzyme in situ , the gene of alcohol dehydrogenase from Thermoanaerobacter brockii and glucose dehydrogenase from Bacillus subtilis were ligated into the multiple cloning sites of pRSFDuet-1 plasmid to construct the recombinant Escherichia BL21 (DE3) that co-expressing alcohol dehydrogenase and glucose dehydrogenase. Different culture conditions including the medium composition, inducer and pH etc were systematically investigated to improve the enzyme production. The enzyme activity was increased more than 11-fold under optimal culture condition, from 12.7 to 139.8 U L ~(?1) . In the further work, the asymmetric reduction of 1-boc-3-piperidinone by whole cells of recombinant E. coli was systematic optimized to increase the substrate concentration and reaction efficiency. At last, S -NBHP (>99% ee) was prepared at 500 mM substrate concentration without external addition of cofactors. The conversion of S -NBHP reached 96.2% within merely 3 h, corresponding a high space-time yield around 774 g L ~(?1) d ~(?1) . All these results demonstrated the potential of recombinant E. coli BL21 (DE3) coupled expressing alcohol dehydrogenase and glucose dehydrogenase for efficient synthesis of S -NBHP.
机译:通过昂贵的辅酶NAD(P)H阻碍了通过还原酶对1-boc-3-哌啶酮的不对称生物还原来生产(S)-N-boc-3-羟基哌啶(NBHP)。为了原位再生辅酶,将来自布氏嗜热厌氧菌的乙醇脱氢酶基因和枯草芽孢杆菌的葡萄糖脱氢酶基因连接到pRSFDuet-1质粒的多个克隆位点,以构建共表达乙醇脱氢酶的重组大肠杆菌BL21(DE3)。和葡萄糖脱氢酶。系统地研究了包括培养基组成,诱导剂和pH等在内的不同培养条件,以提高酶的产量。在最佳培养条件下,酶活性增加了11倍以上,从12.7增加到139.8 U L〜(?1)。在进一步的工作中,系统优化了重组大肠杆菌全细胞对1-boc-3-哌啶酮的不对称还原,以提高底物浓度和反应效率。最后,在没有外部添加辅因子的情况下以500 mM的底物浓度制备了S -NBHP(> 99%ee)。 S -NBHP的转化率仅在3小时内就达到了96.2%,对应于774 g L〜(?1)d〜(?1)的高时空产率。所有这些结果证明了偶联表达醇脱氢酶和葡萄糖脱氢酶的重组大肠杆菌BL21(DE3)对于有效合成S-NBHP的潜力。

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