Asymmetric Alkylation of Cyclic Ketones with Dehydroalanine via H-Bond-Directing Enamine Catalysis: Straightforward Access to Enantiopure Unnatural α-Amino Acids.
Michele RetiniSilvia BartolucciFrancesca BartocciniGiovanni PiersantiPublished in: Chemistry (Weinheim an der Bergstrasse, Germany) (2022)
The growing importance of structurally diverse and functionalized enantiomerically pure unnatural amino acids in the design of drugs, including peptides, has stimulated the development of new synthetic methods. This study reports the challenging direct asymmetric alkylation of cyclic ketones with dehydroalanine derivatives via a conjugate addition reaction for the synthesis of enantiopure ketone-based α-unnatural amino acids. The key to success was the design of a bifunctional primary amine-thiourea catalyst that combines H-bond-directing activation and enamine catalysis. The simultaneous dual activation of the two relatively unreactive partners, confirmed by mass spectrometry studies, results in high reactivity while securing high levels of stereocontrol. A broad substrate scope is accompanied by versatile downstream chemical modifications. The mild reaction conditions and consistently excellent enantioselectivities (>95 % ee in most cases) render this protocol highly practical for the rapid construction of valuable noncanonical enantiopure α-amino-acid building blocks.
Keyphrases
- amino acid
- mass spectrometry
- visible light
- highly efficient
- randomized controlled trial
- electron transfer
- liquid chromatography
- quantum dots
- metal organic framework
- high resolution
- emergency department
- solid state
- cancer therapy
- gas chromatography
- adverse drug
- case control
- carbon dioxide
- tandem mass spectrometry
- loop mediated isothermal amplification
- simultaneous determination
- hiv testing
- high density
- men who have sex with men
- electronic health record