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Efficient Asymmetric Biomimetic Aldol Reaction of Glycinates and Trifluoromethyl Ketones by Carbonyl Catalysis
Author(s) -
Cheng Aolin,
Zhang Liangliang,
Zhou Qinghai,
Liu Tao,
Cao Jing,
Zhao Guoqing,
Zhang Kun,
Song Guanshui,
Zhao Baoguo
Publication year - 2021
Publication title -
angewandte chemie
Language(s) - English
Resource type - Journals
eISSN - 1521-3757
pISSN - 0044-8249
DOI - 10.1002/ange.202104031
Subject(s) - aldol reaction , chemistry , diastereomer , catalysis , trifluoromethyl , enantioselective synthesis , pyridoxal , aldol condensation , glycine , organic chemistry , organocatalysis , stereochemistry , amino acid , enzyme , biochemistry , alkyl
The direct asymmetric aldol reaction of glycinates represents an intriguing and straightforward strategy to make biologically significant chiral β‐hydroxy‐α‐amino‐acid derivatives. But it is not easy to realize the transformation due to the disruption of the reactive NH 2 group of glycinates. Inspired by the enzymatic aldol reaction of glycine, we successfully developed an asymmetric aldol reaction of glycinate 5 and trifluoromethyl ketones 4 with 0.1–0.0033 mol % of chiral N ‐methyl pyridoxal 7 a as the catalyst, producing chiral β‐trifluoromethyl‐β‐hydroxy‐α‐amino‐acid esters 6 in 55–82 % yields (for the syn ‐diastereomers) with up to >20:1 dr and 99 % ee under very mild conditions. The reaction proceeds via a catalytic cycle similar to the enzymatic aldol reaction of glycine. Pyridoxal catalyst 7 a activates both reactants at the same time and brings them together in a specific spatial orientation, accounting for the high efficiency as well as excellent diastereo‐ and enantioselectivities.

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