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.

Gomez De Santos, P., Gonzalez-Benjumea, A., Fernandez-Garcia, A., Aranda, C., Wu, Y., But, A., et al. (2023). Engineering a Highly Regioselective Fungal Peroxygenase for the Synthesis of Hydroxy Fatty Acids. ANGEWANDTE CHEMIE. INTERNATIONAL EDITION, 62(9 (February 20, 2023)) [10.1002/anie.202217372].

Engineering a Highly Regioselective Fungal Peroxygenase for the Synthesis of Hydroxy Fatty Acids

Fernandez-Garcia A.
Co-primo
;
2023

Abstract

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.
Articolo in rivista - Articolo scientifico
Hydroxy Fatty Acids; Over-Oxidation; Protein Engineering; Regioselectivity; Unspecific Peroxygenase;
English
30-dic-2022
2023
62
9 (February 20, 2023)
e202217372
open
Gomez De Santos, P., Gonzalez-Benjumea, A., Fernandez-Garcia, A., Aranda, C., Wu, Y., But, A., et al. (2023). Engineering a Highly Regioselective Fungal Peroxygenase for the Synthesis of Hydroxy Fatty Acids. ANGEWANDTE CHEMIE. INTERNATIONAL EDITION, 62(9 (February 20, 2023)) [10.1002/anie.202217372].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/625762
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