College of Pharmaceutical Science, Zhejiang University of Technology, Hangzhou 310014, China.
College of Biotechnology and Bioengineering, Zhejiang University of Technology, Hangzhou 310014, China.
Molecules. 2022 Oct 28;27(21):7331. doi: 10.3390/molecules27217331.
(R)-1-[3,5-bis(trifluoromethyl)phenyl]ethanamine, a key chiral intermediate of selective tetrodotoxin-sensitive blockers, was efficiently synthesized by a bienzyme cascade system formed by with R-ω-transaminase (ATA117) and an alcohol dehydrogenase (ADH) co-expression system. Herein, we report that the use of ATA117 as the biocatalyst for the amination of 3,5-bistrifluoromethylacetophenone led to the highest efficiency in product performance (enantiomeric excess > 99.9%). Moreover, to further improve the product yield, ADH was introduced into the reaction system to promote an equilibrium shift. Additionally, bienzyme cascade system was constructed by five different expression systems, including two tandem expression recombinant plasmids (pETDuet-ATA117-ADH and pACYCDuet-ATA117-ADH) and three co-expressed dual-plasmids (pETDuet-ATA117/pET28a-ADH, pACYCDuet-ATA117/pET28a-ADH, and pACYCDuet-ATA117/pETDuet-ADH), utilizing recombinant engineered bacteria. Subsequent studies revealed that as compared with ATA117 single enzyme, the substrate handling capacity of BL21(DE3)/pETDuet-ATA117-ADH (0.25 g wet weight) developed for bienzyme cascade system was increased by 1.50 folds under the condition of 40 °C, 180 rpm, 0.1 M pH9 Tris-HCl for 24 h. To the best of our knowledge, ours is the first report demonstrating the production of (R)-1-[3,5-bis(trifluoromethyl)phenyl]ethanamine using a bienzyme cascade system, thus providing valuable insights into the biosynthesis of chiral amines.
(R)-1-[3,5-双(三氟甲基)苯基]乙胺是一种选择性河豚毒素敏感阻滞剂的关键手性中间体,通过由 R-ω-转氨酶(ATA117)和醇脱氢酶(ADH)共表达系统形成的双酶级联系统高效合成。在此,我们报告使用 ATA117 作为 3,5-双三氟甲基苯乙酮的胺化生物催化剂,可使产品性能达到最高效率(对映体过量>99.9%)。此外,为了进一步提高产品收率,引入 ADH 促进平衡转移。此外,通过五个不同的表达系统构建了双酶级联系统,包括两个串联表达重组质粒(pETDuet-ATA117-ADH 和 pACYCDuet-ATA117-ADH)和三个共表达双质粒(pETDuet-ATA117/pET28a-ADH、pACYCDuet-ATA117/pET28a-ADH 和 pACYCDuet-ATA117/pETDuet-ADH),利用重组工程菌。随后的研究表明,与 ATA117 单酶相比,在 40°C、180rpm、0.1M pH9 Tris-HCl 下培养 24 小时,为双酶级联系统开发的 BL21(DE3)/pETDuet-ATA117-ADH(湿重 0.25g)的底物处理能力提高了 1.50 倍。据我们所知,这是首次使用双酶级联系统生产(R)-1-[3,5-双(三氟甲基)苯基]乙胺的报道,为手性胺的生物合成提供了有价值的见解。