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Regioselective para-Carboxylation of Catechols with a Prenylated Flavin Dependent Decarboxylase

Authors :
Payer, Stefan E.
Marshall, Stephen A.
Bärland, Natalie
Sheng, Xiang
Reiter, Tamara
Dordic, Andela
Steinkellner, Georg
Wuensch, Christiane
Kaltwasser, Susann
Fisher, Karl
Rigby, Stephen E. J.
Macheroux, Peter
Vonck, Janet
Gruber, Karl
Faber, Kurt
Himo, Fahmi
Leys, David
Pavkov-Keller, Tea
Glueck, Silvia M.
Payer, Stefan E.
Marshall, Stephen A.
Bärland, Natalie
Sheng, Xiang
Reiter, Tamara
Dordic, Andela
Steinkellner, Georg
Wuensch, Christiane
Kaltwasser, Susann
Fisher, Karl
Rigby, Stephen E. J.
Macheroux, Peter
Vonck, Janet
Gruber, Karl
Faber, Kurt
Himo, Fahmi
Leys, David
Pavkov-Keller, Tea
Glueck, Silvia M.
Publication Year :
2017

Abstract

The utilization of CO2 as a carbon source for organic synthesis meets the urgent demand for more sustainability in the production of chemicals. Herein, we report on the enzyme-catalyzed para-carboxylation of catechols, employing 3,4-dihydroxybenzoic acid decarboxylases (AroY) that belong to the UbiD enzyme family. Crystal structures and accompanying solution data confirmed that AroY utilizes the recently discovered prenylated FMN (prFMN) cofactor, and requires oxidative maturation to form the catalytically competent prFMN(iminium) species. This study reports on the in vitro reconstitution and activation of a prFMN-dependent enzyme that is capable of directly carboxylating aromatic catechol substrates under ambient conditions. A reaction mechanism for the reversible decarboxylation involving an intermediate with a single covalent bond between a quinoid adduct and cofactor is proposed, which is distinct from the mechanism of prFMN-associated 1,3-dipolar cycloadditions in related enzymes.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1234938194
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1002.anie.201708091