Beijing National Laboratory for Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
J Org Chem. 2012 Apr 20;77(8):4063-72. doi: 10.1021/jo300412j. Epub 2012 Apr 6.
In this paper, we report the amidase-catalyzed hydrolysis of pyrrolidine-2,5-dicarboxamides and their application in organic synthesis. Catalyzed by Rhodococcus erythropolis AJ270, an amidase containing microbial whole cell catalyst, racemic trans-pyrrolidine-2,5-carboxamide was kinetically resolved into (2S,5S)-pyrrolidine-2,5-dicarboxamide and (2R,5R)-5-carbamoylpyrrolidine-2-carboxylic acid in high yields and excellent enantioselectivity. Biocatalytic desymmetrization of meso cis-pyrrolidinedicarboxamide afforded enantiomerically pure (2R,5S)-5-carbamoylpyrrolidine-2-carboxylic acid in an almost quantitative yield. In both kinetic resolution and desymmetrization, the amidase always exhibited excellent 2R-enantioselectivity, although its catalytic efficiency was influenced dramatically by the steric effect of the substituent on the nitrogen atom of pyrrolidine ring. The synthetic potential of biotransformation was demonstrated by the scalable preparation of (2R,5R)- and (2R,5S)-5-carbamoylpyrrolidine-2-carboxylic acids and their conversions to aza-nucleoside analogues and druglike pyrroline-fused diazepin-11(5H)-one compounds.
本文报道了酰胺酶催化的吡咯烷-2,5-二羧酸酰胺的水解及其在有机合成中的应用。通过红球菌 AJ270 中的酰胺酶(一种含有微生物全细胞催化剂的酰胺酶)催化,外消旋反式吡咯烷-2,5-羧酰胺以高收率和优异的对映选择性动力学拆分得到(2S,5S)-吡咯烷-2,5-二羧酸酰胺和(2R,5R)-5-氨甲酰基吡咯烷-2-羧酸。内消旋顺式吡咯烷二羧酸酰胺的生物催化去对称化以几乎定量的产率得到对映体纯的(2R,5S)-5-氨甲酰基吡咯烷-2-羧酸。在动力学拆分和去对称化中,尽管酰胺酶的催化效率受到吡咯烷环上氮原子取代基的空间效应的显著影响,但它始终表现出优异的 2R-对映选择性。通过可扩展制备(2R,5R)-和(2R,5S)-5-氨甲酰基吡咯烷-2-羧酸以及它们转化为氮杂核苷类似物和类药性吡咯啉稠合的二氮杂环庚烷-11(5H)-酮化合物,展示了生物转化的合成潜力。