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Asymmetric azidohydroxylation of styrene derivatives mediated by a biomimetic styrene monooxygenase enzymatic cascade

Enantioenriched azido alcohols are precursors for valuable chiral aziridines and 1,2-amino alcohols, however their chiral substituted analogues are difficult to access. We established a cascade for the asymmetric azidohydroxylation of styrene derivatives leading to chiral substituted 1,2-azido alcoh...

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Autores principales: Martínez-Montero, Lía, Tischler, Dirk, Süss, Philipp, Schallmey, Anett, Franssen, Maurice C. R., Hollmann, Frank, Paul, Caroline E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8328376/
https://www.ncbi.nlm.nih.gov/pubmed/34381590
http://dx.doi.org/10.1039/d1cy00855b
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author Martínez-Montero, Lía
Tischler, Dirk
Süss, Philipp
Schallmey, Anett
Franssen, Maurice C. R.
Hollmann, Frank
Paul, Caroline E.
author_facet Martínez-Montero, Lía
Tischler, Dirk
Süss, Philipp
Schallmey, Anett
Franssen, Maurice C. R.
Hollmann, Frank
Paul, Caroline E.
author_sort Martínez-Montero, Lía
collection PubMed
description Enantioenriched azido alcohols are precursors for valuable chiral aziridines and 1,2-amino alcohols, however their chiral substituted analogues are difficult to access. We established a cascade for the asymmetric azidohydroxylation of styrene derivatives leading to chiral substituted 1,2-azido alcohols via enzymatic asymmetric epoxidation, followed by regioselective azidolysis, affording the azido alcohols with up to two contiguous stereogenic centers. A newly isolated two-component flavoprotein styrene monooxygenase StyA proved to be highly selective for epoxidation with a nicotinamide coenzyme biomimetic as a practical reductant. Coupled with azide as a nucleophile for regioselective ring opening, this chemo-enzymatic cascade produced highly enantioenriched aromatic α-azido alcohols with up to >99% conversion. A bi-enzymatic counterpart with halohydrin dehalogenase-catalyzed azidolysis afforded the alternative β-azido alcohol isomers with up to 94% diastereomeric excess. We anticipate our biocatalytic cascade to be a starting point for more practical production of these chiral compounds with two-component flavoprotein monooxygenases.
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spelling pubmed-83283762021-08-09 Asymmetric azidohydroxylation of styrene derivatives mediated by a biomimetic styrene monooxygenase enzymatic cascade Martínez-Montero, Lía Tischler, Dirk Süss, Philipp Schallmey, Anett Franssen, Maurice C. R. Hollmann, Frank Paul, Caroline E. Catal Sci Technol Chemistry Enantioenriched azido alcohols are precursors for valuable chiral aziridines and 1,2-amino alcohols, however their chiral substituted analogues are difficult to access. We established a cascade for the asymmetric azidohydroxylation of styrene derivatives leading to chiral substituted 1,2-azido alcohols via enzymatic asymmetric epoxidation, followed by regioselective azidolysis, affording the azido alcohols with up to two contiguous stereogenic centers. A newly isolated two-component flavoprotein styrene monooxygenase StyA proved to be highly selective for epoxidation with a nicotinamide coenzyme biomimetic as a practical reductant. Coupled with azide as a nucleophile for regioselective ring opening, this chemo-enzymatic cascade produced highly enantioenriched aromatic α-azido alcohols with up to >99% conversion. A bi-enzymatic counterpart with halohydrin dehalogenase-catalyzed azidolysis afforded the alternative β-azido alcohol isomers with up to 94% diastereomeric excess. We anticipate our biocatalytic cascade to be a starting point for more practical production of these chiral compounds with two-component flavoprotein monooxygenases. The Royal Society of Chemistry 2021-06-14 /pmc/articles/PMC8328376/ /pubmed/34381590 http://dx.doi.org/10.1039/d1cy00855b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Martínez-Montero, Lía
Tischler, Dirk
Süss, Philipp
Schallmey, Anett
Franssen, Maurice C. R.
Hollmann, Frank
Paul, Caroline E.
Asymmetric azidohydroxylation of styrene derivatives mediated by a biomimetic styrene monooxygenase enzymatic cascade
title Asymmetric azidohydroxylation of styrene derivatives mediated by a biomimetic styrene monooxygenase enzymatic cascade
title_full Asymmetric azidohydroxylation of styrene derivatives mediated by a biomimetic styrene monooxygenase enzymatic cascade
title_fullStr Asymmetric azidohydroxylation of styrene derivatives mediated by a biomimetic styrene monooxygenase enzymatic cascade
title_full_unstemmed Asymmetric azidohydroxylation of styrene derivatives mediated by a biomimetic styrene monooxygenase enzymatic cascade
title_short Asymmetric azidohydroxylation of styrene derivatives mediated by a biomimetic styrene monooxygenase enzymatic cascade
title_sort asymmetric azidohydroxylation of styrene derivatives mediated by a biomimetic styrene monooxygenase enzymatic cascade
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8328376/
https://www.ncbi.nlm.nih.gov/pubmed/34381590
http://dx.doi.org/10.1039/d1cy00855b
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