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

Research output: Contribution to journalResearch articleContributedpeer-review

Contributors

  • Patricia Gomez de Santos - , S.L. (Author)
  • Alejandro González-Benjumea - , Spanish National Research Council (CSIC) (Author)
  • Angela Fernandez-Garcia - , Spanish National Research Council (CSIC) (Author)
  • Carmen Aranda - , Spanish National Research Council (CSIC) (Author)
  • Yinqi Wu - , Delft University of Technology (Author)
  • Andrada But - , Delft University of Technology (Author)
  • Patricia Molina-Espeja - , Spanish National Research Council (CSIC) (Author)
  • Diana M. Maté - , Spanish National Research Council (CSIC) (Author)
  • David Gonzalez-Perez - , Spanish National Research Council (CSIC) (Author)
  • Wuyuan Zhang - , Delft University of Technology (Author)
  • Jan Kiebist - , Brandenburg University of Technology (Author)
  • Katrin Scheibner - , Brandenburg University of Technology (Author)
  • Martin Hofrichter - , Chair of Environmental Biotechnology (Author)
  • Katarzyna Świderek - , Jaume I University (Author)
  • Vicent Moliner - , Jaume I University (Author)
  • Julia Sanz-Aparicio - , Spanish National Research Council (CSIC) (Author)
  • Frank Hollmann - , Delft University of Technology (Author)
  • Ana Gutiérrez - , Spanish National Research Council (CSIC) (Author)
  • Miguel Alcalde - , Spanish National Research Council (CSIC) (Author)

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.

Details

Original languageEnglish
Article numbere202217372
JournalAngewandte Chemie - International Edition
Volume62
Issue number9
Publication statusPublished - 20 Feb 2023
Peer-reviewedYes

External IDs

PubMed 36583658

Keywords

ASJC Scopus subject areas

Keywords

  • Hydroxy Fatty Acids, Over-Oxidation, Protein Engineering, Regioselectivity, Unspecific Peroxygenase