Department of Organic Chemistry and Technology, Faculty of Chemical Technology and Biotechnology, Budapest University of Technology and Economics, Műegyetem rkp. 3, H-1111 Budapest, Hungary.
Molecules. 2024 Aug 15;29(16):3858. doi: 10.3390/molecules29163858.
This study explored the enantiocomplementary bioreduction of substituted 1-(arylsulfanyl)propan-2-ones in batch mode using four wild-type yeast strains and two different recombinant alcohol dehydrogenases from and The selected yeast strains and recombinant alcohol dehydrogenases as whole-cell biocatalysts resulted in the corresponding 1-(arylsulfanyl)propan-2-ols with moderate to excellent conversions (60-99%) and high selectivities (ee > 95%). The best bioreductions-in terms of conversion (>90%) and enantiomeric excess (>99% ee)-at preparative scale resulted in the expected chiral alcohols with similar conversion and selectivity to the screening reactions.
本研究采用四种野生酵母菌株和两种来自 和 的不同重组醇脱氢酶,在分批模式下探索了取代的 1-(芳硫基)丙-2-酮的对映体互补生物还原。选择的酵母菌株和重组醇脱氢酶作为全细胞生物催化剂,导致相应的 1-(芳硫基)丙-2-醇以中等至优异的转化率(60-99%)和高选择性(ee>95%)生成。在制备规模下,就转化率(>90%)和对映体过量(>99%ee)而言,最佳的生物还原得到了预期的手性醇,其转化率和选择性与筛选反应相似。