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One-Pot Cascade Synthesis of (3S)-Hydroxyketones Catalyzed by Transketolase via Hydroxypyruvate Generated in Situ from d-Serine by d-Amino Acid Oxidase

Academic Article
Publication Date:
2019
abstract:
We described an efficient in situ generation of hydroxypyruvate from d-serine catalyzed by a d-amino acid oxidase from Rhodotorula gracilis. This strategy revealed an interesting alternative to the conventional chemical synthesis of hydroxypyruvate starting from toxic bromopyruvate or to the enzymatic transamination from l-serine requiring an additional substrate as amino acceptor. Hydroxypyruvate thus produced was used as donor substrate of transketolases from Escherichia coli or from Geobacillus stearothermophilus catalyzing the stereoselective formation of a carbon−carbon bond. The enzymatic cascade reaction was performed in one-pot in the presence of d-serine and appropriate aldehydes for the synthesis of valuable (3S)-hydroxyketones, which were obtained with high enantio- and diastereoselectivity and in good yield. The efficiency of the process was based on the irreversibility of both reactions allowing complete conversion of d-serine and aldehydes. (Figure presented.).
Iris type:
Articolo su Rivista
Keywords:
biocatalysis; d-amino acid oxidase; hydroxypyruvate; ketoses; stereoselectivity; transketolase
List of contributors:
L'Enfant, M.; Bruna, F.; Lorilliere, M.; Ocal, N.; Fessner, W. -D.; Pollegioni, L.; Charmantray, F.; Hecquet, L.
Authors of the University:
POLLEGIONI LOREDANO
The Protein Factory 2.0
Handle:
https://irinsubria.uninsubria.it/handle/11383/2094173
Published in:
ADVANCED SYNTHESIS & CATALYSIS
Journal
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