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P450-Catalyzed Intramolecular sp(3) C–H Amination with Arylsulfonyl Azide Substrates

[Image: see text] The direct amination of aliphatic C–H bonds represents a most valuable transformation in organic chemistry. While a number of transition-metal-based catalysts have been developed and investigated for this purpose, the possibility to execute this transformation with biological catal...

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Autores principales: Singh, Ritesh, Bordeaux, Melanie, Fasan, Rudi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3949735/
https://www.ncbi.nlm.nih.gov/pubmed/24634794
http://dx.doi.org/10.1021/cs400893n
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author Singh, Ritesh
Bordeaux, Melanie
Fasan, Rudi
author_facet Singh, Ritesh
Bordeaux, Melanie
Fasan, Rudi
author_sort Singh, Ritesh
collection PubMed
description [Image: see text] The direct amination of aliphatic C–H bonds represents a most valuable transformation in organic chemistry. While a number of transition-metal-based catalysts have been developed and investigated for this purpose, the possibility to execute this transformation with biological catalysts has remained largely unexplored. Here, we report that cytochrome P450 enzymes can serve as efficient catalysts for mediating intramolecular benzylic C–H amination reactions in a variety of arylsulfonyl azide compouds. Under optimized conditions, the P450 catalysts were found to support up to 390 total turnovers leading to the formation of the desired sultam products with excellent regioselectivity. In addition, the chiral environment provided by the enzyme active site allowed for the reaction to proceed in a stereo- and enantioselective manner. The C–H amination activity, substrate profile, and enantio/stereoselectivity of these catalysts could be modulated by utilizing enzyme variants with engineered active sites.
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spelling pubmed-39497352015-01-06 P450-Catalyzed Intramolecular sp(3) C–H Amination with Arylsulfonyl Azide Substrates Singh, Ritesh Bordeaux, Melanie Fasan, Rudi ACS Catal [Image: see text] The direct amination of aliphatic C–H bonds represents a most valuable transformation in organic chemistry. While a number of transition-metal-based catalysts have been developed and investigated for this purpose, the possibility to execute this transformation with biological catalysts has remained largely unexplored. Here, we report that cytochrome P450 enzymes can serve as efficient catalysts for mediating intramolecular benzylic C–H amination reactions in a variety of arylsulfonyl azide compouds. Under optimized conditions, the P450 catalysts were found to support up to 390 total turnovers leading to the formation of the desired sultam products with excellent regioselectivity. In addition, the chiral environment provided by the enzyme active site allowed for the reaction to proceed in a stereo- and enantioselective manner. The C–H amination activity, substrate profile, and enantio/stereoselectivity of these catalysts could be modulated by utilizing enzyme variants with engineered active sites. American Chemical Society 2014-01-06 2014-02-07 /pmc/articles/PMC3949735/ /pubmed/24634794 http://dx.doi.org/10.1021/cs400893n Text en Copyright © 2014 American Chemical Society
spellingShingle Singh, Ritesh
Bordeaux, Melanie
Fasan, Rudi
P450-Catalyzed Intramolecular sp(3) C–H Amination with Arylsulfonyl Azide Substrates
title P450-Catalyzed Intramolecular sp(3) C–H Amination with Arylsulfonyl Azide Substrates
title_full P450-Catalyzed Intramolecular sp(3) C–H Amination with Arylsulfonyl Azide Substrates
title_fullStr P450-Catalyzed Intramolecular sp(3) C–H Amination with Arylsulfonyl Azide Substrates
title_full_unstemmed P450-Catalyzed Intramolecular sp(3) C–H Amination with Arylsulfonyl Azide Substrates
title_short P450-Catalyzed Intramolecular sp(3) C–H Amination with Arylsulfonyl Azide Substrates
title_sort p450-catalyzed intramolecular sp(3) c–h amination with arylsulfonyl azide substrates
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3949735/
https://www.ncbi.nlm.nih.gov/pubmed/24634794
http://dx.doi.org/10.1021/cs400893n
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