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1.
Angew Chem Int Ed Engl ; 62(9): e202217372, 2023 02 20.
Artículo en Inglés | MEDLINE | ID: mdl-36583658

RESUMEN

The hydroxylation of fatty acids is an appealing reaction in synthetic chemistry, although the lack of selective catalysts hampers its industrial implementation. In this study, we have engineered a highly regioselective fungal peroxygenase for the ω-1 hydroxylation of fatty acids with quenched stepwise over-oxidation. One single mutation near the Phe catalytic tripod narrowed the heme cavity, promoting a dramatic shift toward subterminal hydroxylation with a drop in the over-oxidation activity. While crystallographic soaking experiments and molecular dynamic simulations shed light on this unique oxidation pattern, the selective biocatalyst was produced by Pichia pastoris at 0.4 g L-1 in a fed-batch bioreactor and used in the preparative synthesis of 1.4 g of (ω-1)-hydroxytetradecanoic acid with 95 % regioselectivity and 83 % ee for the S enantiomer.


Asunto(s)
Ácidos Grasos , Oxigenasas de Función Mixta , Oxigenasas de Función Mixta/genética , Oxigenasas de Función Mixta/metabolismo , Ácidos Grasos/química , Oxidación-Reducción , Hidroxilación
2.
ACS Sustain Chem Eng ; 8(7): 2602-2607, 2020 Feb 24.
Artículo en Inglés | MEDLINE | ID: mdl-32117647

RESUMEN

The scale-up of chemoenzymatic bromolactonization to 100 g scale is presented, together with an identification of current limitations. The preparative-scale reaction also allowed for meaningful mass balances identifying current bottlenecks of the chemoenzymatic reaction.

3.
Org Biomol Chem ; 17(42): 9267-9274, 2019 10 30.
Artículo en Inglés | MEDLINE | ID: mdl-31599911

RESUMEN

Haloperoxidases are very active catalysts for the in situ generation of electrophilic halide species for oxidative halogenation reactions. In the synthetic community, these catalysts, however, are not widely used. The aim of this mini-review is to critically summarise the current state-of-the-art of haloperoxidase catalysis for organic synthesis. We hope that the excellent catalytic performance of these catalysts will trigger more chemists to consider them in their synthesis planning.

4.
ChemSusChem ; 5(7): 1199-202, 2012 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-22556065

RESUMEN

Industrial nitriles from biomass: Vanadium-chloroperoxidase is successfully used to transform selectively glutamic acid into 3-cyanopropanoic acid, a key intermediate for the synthesis of bio-succinonitrile and bio-acrylonitrile, by using a catalytic amount of a halide salt. This clean oxidative decarboxylation can be applied to mixtures of amino acids obtained from plant waste streams, leading to easily separable nitriles.


Asunto(s)
Cloruro Peroxidasa/metabolismo , Ácido Glutámico/química , Industrias , Nitrilos/química , Ascomicetos/enzimología , Peróxido de Hidrógeno/química , Oxidación-Reducción , Especificidad por Sustrato
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