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首页> 外文期刊>Reaction Chemistry & Engineering >Highly efficient asymmetric reduction of ketopantolactone to D-(?)-pantolactone by Escherichia coli cells expressing recombinant conjugated polyketone reductase and glucose dehydrogenase in a fed-batch biphasic reaction system?
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Highly efficient asymmetric reduction of ketopantolactone to D-(?)-pantolactone by Escherichia coli cells expressing recombinant conjugated polyketone reductase and glucose dehydrogenase in a fed-batch biphasic reaction system?

机译:高效的不对称还原酮酮酮至D - (α) - 通过大肠杆菌细胞表达重组缀合聚酮还原酶和葡萄糖脱氢酶在FED分批双相反应体系中的糖酮细胞?

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摘要

D-(?)-Pantolactone (D-PL) is the key chiral intermediate used to synthesize calcium D-pantothenate. In a previous study, a conjugated polyketone reductase (CduCPR) was discovered to efficiently catalyse ketopantolactone (KPL) to D-PL with a high stereoselectivity. Nevertheless, this method was limited due to the expensive coenzyme, nicotinamide adenine dinucleotide phosphate hydrate (NADPH), and the poor stability of substrate KPL in pure aqueous buffer. Here, to overcome these problems, we developed a whole-cell biotransformation process to produce D-PL in a biphasic reaction system. Recombinant CduCPR and glucose dehydrogenase (BsuGDH) were co-expressed in Escherichia coli to simultaneously achieve the synthesis of D-PL and the regeneration of NADPH. The biphasic reaction system contained 15% dichloromethane (v/v) which significantly inhibited the undesirable hydrolysis of KPL. Approximately, 2.8% of 100 mM KPL was spontaneously hydrolysed to ketopantoic acid in the biphasic system, which was lower than 54% of pure aqueous buffer. The biphasic reaction system was optimized and scaled up to prepare D-PL. In a fed-batch biphasic reaction, the substrate KPL was continuously fed into the reactor after a batch reaction. The D-PL concentration reached 0.77 mol L?1 in the reaction mixture at 7 h, and its enantiomeric excess was 99%. This study presented an alternative method to asymmetrically synthesize enantiopure D-PL for further industrial application.
机译:D - (α) - Pantolactone(D-PL)是用于合成钙D-泛酸钙的关键手性中间体。在先前的研究中,发现共轭聚酮还原酶(Cducpr)以通过高立体切性有效地催化酮丙酮(KPL)至D-PL。然而,由于昂贵的辅酶,烟酰胺腺嘌呤二核苷酸磷酸水合物(NADPH)以及纯水性缓冲液中的底物KPL稳定性较差,该方法受到限制。在这里,为了克服这些问题,我们开发了一种全细胞生物转化过程,在双相反应系统中生产D-PL。重组Cducpr和葡萄糖脱氢酶(Bsugdh)在大肠杆菌中共同表达,同时实现D-PL的合成和NADPH的再生。双相反应系统含有15%二氯甲烷(v / v),其显着抑制不希望的KPL水解。在双相体系中大约2.8%的100mm KPL在双相系统中自发地水解至酮丙酸,其低于纯水性缓冲液的54%。双相反应系统经过优化并缩放以准备D-PL。在进料批次的双相反应中,在分批反应后,将基材KPL连续加入反应器中。在7小时的反应混合物中,D-Pl浓度在反应混合物中达到0.77mol L 1 2,其对映体过量为99%。该研究介绍了一种替代方法,用于不对称地合成对映射D-PL以进行进一步的工业应用。

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