Biocatalytic Asymmetric Synthesis of Chiral Amines from Ketones Applied to Sitagliptin Manufacture
Top Cited Papers
- 16 July 2010
- journal article
- other
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 329 (5989), 305-309
- https://doi.org/10.1126/science.1188934
Abstract
Pharmaceutical synthesis can benefit greatly from the selectivity gains associated with enzymatic catalysis. Here, we report an efficient biocatalytic process to replace a recently implemented rhodium-catalyzed asymmetric enamine hydrogenation for the large-scale manufacture of the antidiabetic compound sitagliptin. Starting from an enzyme that had the catalytic machinery to perform the desired chemistry but lacked any activity toward the prositagliptin ketone, we applied a substrate walking, modeling, and mutation approach to create a transaminase with marginal activity for the synthesis of the chiral amine; this variant was then further engineered via directed evolution for practical application in a manufacturing setting. The resultant biocatalysts showed broad applicability toward the synthesis of chiral amines that previously were accessible only via resolution. This work underscores the maturation of biocatalysis to enable efficient, economical, and environmentally benign processes for the manufacture of pharmaceuticals.Keywords
This publication has 24 references indexed in Scilit:
- Practical chiral alcohol manufacture using ketoreductasesCurrent Opinion in Chemical Biology, 2010
- Highly Efficient Asymmetric Synthesis of SitagliptinJournal of the American Chemical Society, 2009
- Deracemisation of α‐Chiral Primary Amines by a One‐Pot, Two‐Step Cascade Reaction Catalysed by ω‐TransaminasesEuropean Journal of Organic Chemistry, 2009
- Asymmetric Synthesis of Optically Pure Pharmacologically Relevant Amines Employing ω‐TransaminasesAdvanced Synthesis & Catalysis, 2008
- Safety and tolerability of sitagliptin in patients with type 2 diabetes: a pooled analysisBMC Endocrine Disorders, 2008
- Industrial-Scale Synthesis and Applications of Asymmetric Hydrogenation CatalystsAccounts of Chemical Research, 2007
- Redesigning the substrate specificity of ω‐aminotransferase for the kinetic resolution of aliphatic chiral aminesBiotechnology & Bioengineering, 2007
- Engineering proteinase K using machine learning and synthetic genesBMC Biotechnology, 2007
- Rapid Creation of a Novel Protein Function by in Vitro CoevolutionJournal of Molecular Biology, 2005
- Semi-synthetic DNA shuffling of aveC leads to improved industrial scale production of doramectin by Streptomyces avermitilisMetabolic Engineering, 2005