De Arijit, Shukla Ajeet, Masood Husain Syed
Department of Biological and Synthetic Chemistry, Centre of Biomedical Research, Sanjay Gandhi Postgraduate Institute of Medical Sciences Campus, Raebareli Road, Lucknow, 226014, INDIA.
Angew Chem Int Ed Engl. 2024 Dec 9;63(50):e202411561. doi: 10.1002/anie.202411561. Epub 2024 Oct 24.
The tetrahydroquinoline (THQ) framework is commonly found in natural products and pharmaceutically relevant molecules. Apart from using transition metal catalysts and chiral phosphoric acids, the chiral 2-substituted 1,2,3,4-THQs are synthesized using amine oxidase biocatalysts. However, the use of imine reductases (IREDs) in their asymmetric synthesis remained unexplored. In the current work, IREDs are employed in telescopic multienzyme cascades to catalyze the intramolecular reductive amination leading to chiral 2-alkyl and 2-aryl substituted-1,2,3,4-tetrahydroquinolines starting from inexpensive nitroalkenones. The cascades containing NtDBR (an ene reductase), NfsB (a nitro reductase) with either NaSO or VO, various IREDs, and glucose dehydrogenase (for NADPH regeneration) are used to synthesize a broad range of (R)/(S)-2-alkyl-substituted (THQs) (26 examples) with high yield (up to 93 %) and excellent ee (up to 99 %) in one-pot. The method further facilitates the one-pot biocatalytic synthesis of chiral 2-aryl substituted THQs (26 examples) from amino chalcones. Lastly, the asymmetric synthesis of several (R)- and (S)-THQ based intermediates of Hancock alkaloids showed the practical application of the newly developed biocatalytic cascades.
四氢喹啉(THQ)骨架常见于天然产物和具有药学相关性的分子中。除了使用过渡金属催化剂和手性磷酸外,手性2-取代的1,2,3,4-THQ还可使用胺氧化酶生物催化剂合成。然而,亚胺还原酶(IREDs)在其不对称合成中的应用尚未得到探索。在当前工作中,IREDs被用于串联多酶级联反应中,以催化分子内还原胺化反应,从廉价的硝基烯酮出发,生成手性2-烷基和2-芳基取代的1,2,3,4-四氢喹啉。包含NtDBR(一种烯还原酶)、NfsB(一种硝基还原酶)与NaSO或VO、各种IREDs以及葡萄糖脱氢酶(用于NADPH再生)的级联反应被用于一锅法高产率(高达93%)和高对映体过量(高达99%)地合成多种(R)/(S)-2-烷基取代的(THQs)(26个实例)。该方法还促进了从氨基查尔酮一锅法生物催化合成手性2-芳基取代的THQs(26个实例)。最后,汉考克生物碱的几种基于(R)-和(S)-THQ的中间体的不对称合成展示了新开发的生物催化级联反应的实际应用。