Issue 42, 2022

Rapid and efficient syntheses of tryptophans using a continuous-flow quaternization–substitution reaction of gramines with a chiral nucleophilic glycine equivalent

Abstract

A continuous-flow quaternization reaction of gramines with MeI (<1 min) followed by a substitution reaction with a chiral nucleophilic glycine-derived Ni-complex (S)-2 (<1 min) has successfully been developed to afford the corresponding alkylated Ni-complexes 3 in good yields with excellent diastereoselectivity, based on the results of a one-pot quaternization–substitution reaction of gramines with (S)-2 in a batch process. The continuous-flow process allowed the safe and efficient scale-up synthesis of 3j (84% yield, 99% de, 540 g h−1) to give 7-azatryptophan derivative (S)-4j readily by an acid-catalyzed hydrolysis reaction followed by protection with an Fmoc group. The present method for the rapid and efficient syntheses of enantiopure unnatural tryptophan derivatives from various gramines and (S)-2 will be useful to further promote peptide and protein drug discovery and development research.

Graphical abstract: Rapid and efficient syntheses of tryptophans using a continuous-flow quaternization–substitution reaction of gramines with a chiral nucleophilic glycine equivalent

Supplementary files

Article information

Article type
Paper
Submitted
15 Sep 2022
Accepted
08 Oct 2022
First published
11 Oct 2022

Org. Biomol. Chem., 2022,20, 8331-8340

Rapid and efficient syntheses of tryptophans using a continuous-flow quaternization–substitution reaction of gramines with a chiral nucleophilic glycine equivalent

D. Koiwa, M. Ohira, T. Hiramatsu, H. Abe, T. Kawamoto, Y. Ishihara, B. Ignacio, N. Mansour and T. Romoff, Org. Biomol. Chem., 2022, 20, 8331 DOI: 10.1039/D2OB01682F

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