Institute of Molecular Biology, National Chung Hsing University, Taichung 40227, Taiwan.
Institute of Molecular and Cellular Biology and Department of Life Sciences, National Tsing-Hua University, Hsinchu, 30013, Taiwan.
Enzyme Microb Technol. 2018 Mar;110:14-19. doi: 10.1016/j.enzmictec.2017.12.001. Epub 2017 Dec 10.
A short-chain dehydrogenase/reductase from Serratia marcescens BCRC10948, SM_SDR, has been cloned and expressed in Escherichia coli for the bioconversion of 1-(3-hydroxyphenyl)-2-(methylamino) ethanone (HPMAE) to (R)-phenylephrine[(R)-PE]. However, only 5.11mM (R)-PE was obtained from 10mM HPMAE after a 9h conversion in the previous report. To improve the biocatalytic efficiency, the homologous expression of the SM_SDR in S. marcescens BCRC10948 was achieved using the T5 promoter for expression. By using 2% glycerol as carbon source, we found that 8.00±0.15mM of (R)-PE with more than 99% enantiomeric excess was produced from 10mM HPMAE after 12h conversion at 30°C and pH 7.0. More importantly, by using 50mM HPMAE as the substrate, 23.78±0.84mM of (R)-PE was produced after a 12h conversion with the productivity and the conversion yield of 1.98mmol (R)-PE/lh and 47.50%, respectively. The recombinant S. marcescens cells could be recycled 6 times for the production of (R)-PE, and the bioconversion efficiency remained at 85% when compared to that at the first cycle. Our data indicated that a high conversion efficiency of HPMAE to (R)-PE could be achieved using S. marcescens BCRC10948 cells that homologously express the SM_SDR.
从粘质沙雷氏菌 BCRC10948 中克隆并表达了一种短链脱氢酶/还原酶 SM_SDR,用于将 1-(3-羟基苯基)-2-(甲基氨基)乙酮 (HPMAE) 生物转化为 (R)-苯肾上腺素[(R)-PE]。然而,在前一份报告中,从 10mM HPMAE 转化 9 小时后,仅获得了 5.11mM (R)-PE。为了提高生物催化效率,使用 T5 启动子在粘质沙雷氏菌 BCRC10948 中实现了 SM_SDR 的同源表达。通过使用 2%甘油作为碳源,我们发现,在 30°C 和 pH7.0 下,从 10mM HPMAE 转化 12 小时后,可生产出 8.00±0.15mM 的 (R)-PE,其对映体过量值超过 99%。更重要的是,使用 50mM HPMAE 作为底物,在 12 小时的转化后,可生产出 23.78±0.84mM 的 (R)-PE,其生产速率和转化率分别为 1.98mmol (R)-PE/lh 和 47.50%。重组粘质沙雷氏菌细胞可回收 6 次用于 (R)-PE 的生产,与第一周期相比,生物转化效率保持在 85%。我们的数据表明,使用同源表达 SM_SDR 的粘质沙雷氏菌 BCRC10948 细胞可以实现 HPMAE 向 (R)-PE 的高转化率。