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Efficient Biocatalytic Preparation of Optically Pure (R)-1-4-(Trifluoromethyl)phenylethanol by Recombinant Whole-Cell-Mediated Reduction

机译:通过重组全细胞介导的还原,高效的生物催化制备光学纯(R)-1- 4-(三氟甲基)苯基乙醇

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摘要

(R)-1-[4-(Trifluoromethyl)phenyl]ethanol is an important pharmaceutical intermediate of a chemokine CCR5 antagonist. In the present study, a bioprocess for the asymmetric reduction of 4-(trifluoromethyl)acetophenone to (R)-1-[4-(trifluoromethyl)phenyl]ethanol was developed by recombinant Escherichia coli cells with excellent enantioselectivity. In order to overcome the conversion limitation performed in the conventional buffer medium resulting from poor solubility of non-natural substrate, we subsequently established a polar organic solvent-aqueous medium to improve the efficacy. Isopropanol was selected as the most suitable cosolvent candidate, based on the investigation on a substrate solubility test and cell membrane permeability assay in different organic solvent-buffer media. Under the optimum conditions, the preparative-scale asymmetric reduction generated a 99.1% yield with >99.9% product enantiomeric excess (ee) in a 15% (v/v) isopropanol proportion, at 100 mM of 4-(trifluoromethyl)acetophenone within 3 h. Compared to bioconversion in the buffer medium, the developed isopropanol-aqueous system enhanced the substrate concentration by 2-fold with a remarkably improved yield (from 62.5% to 99.1%), and shortened the reaction time by 21 h. Our study gave the first example for a highly enantioselective production of (R)-1-[4-(trifluoromethyl)phenyl]ethanol by a biological method, and the bioreduction of 4-(trifluoromethyl)acetophenone in a polar organic solvent-aqueous system was more efficient than that in the buffer solution only. This process is also scalable and has potential in application.
机译:(R)-1- [4-(三氟甲基)苯基]乙醇是趋化因子CCR5拮抗剂的重要药物中间体。在本研究中,通过重组大肠杆菌细胞产生具有优异的对映选择性的重组大肠杆菌细胞来开发用于(R)-1- [4-(r)-1- [4-(三氟甲基)苯基]乙醇的非对称还原的生物处理。为了克服由非天然基质的溶解度不良导致的常规缓冲介质中进行的转化限制,我们随后建立了极性有机溶剂 - 水性介质以提高功效。基于对不同有机溶剂缓冲介质中的基底溶解度试验和细胞膜渗透性测定的研究,选择异丙醇作为最合适的辅助剂候选物。在最佳条件下,制备规模的不对称降低产生99.1%的产率,其产量为> 99.9%的产物对映体过量(EE)以15%(v / v)异丙醇比例,在3中以100mM 4-(三氟甲基)苯乙酮。 H。与缓冲介质中的生物转化相比,发育的异丙醇 - 水性系统通过2倍的产率(从62.5%〜99.1%)增强了底物浓度,并将反应时间缩短了21小时。我们的研究通过生物学方法,通过生物学方法提供了高映射的(R)-1- [4- [4-(三氟甲基)苯基]乙醇的实施例,以及在极性有机溶剂 - 水性系统中的4-(三氟甲基)苯乙酮的生物诱导仅比缓冲解决方案更有效。此过程也是可扩展的并且具有应用潜力。

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