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Selective Oxygenation of Ionones and Damascones by Fungal Peroxygenases

Authors :
René Ullrich
Ana Gutiérrez
Jan Kiebist
José C Del Rı O
Martin Hofrichter
Angel T Martı Nez
Katrin Scheibner
Esteban D. Babot
Carmen Aranda
European Commission
Consejo Superior de Investigaciones Científicas (España)
Babot, Esteban Daniel [0000-0001-5539-1721]
Aranda, Carmen [0000-0001-8213-1132]
Río Andrade, José Carlos del [0000-0002-3040-6787]
Martínez, Ángel T. [0000-0002-1584-2863]
Gutiérrez Suárez, Ana [0000-0002-8823-9029]
Ullrich, René [0000-0002-9165-6341]
Babot, Esteban Daniel
Aranda, Carmen
Río Andrade, José Carlos del
Martínez, Ángel T.
Gutiérrez Suárez, Ana
Ullrich, René
Source :
Journal of Agricultural and Food Chemistry, Digital.CSIC. Repositorio Institucional del CSIC, instname
Publication Year :
2020

Abstract

9 páginas.- 6 figuras.- 5 tablas.- 37 referencias.- The Supporting Information is available free of charge at https://pubs.acs.org/doi/10.1021/acs.jafc.0c01019<br />Apocarotenoids are among the most highly valued fragrance constituents, being also appreciated as synthetic building blocks. This work shows the ability of unspecific peroxygenases (UPOs, EC1.11.2.1) from several fungi, some of them being described recently, to catalyze the oxyfunctionalization of α- and β-ionones and α- and β-damascones. Enzymatic reactions yielded oxygenated products such as hydroxy, oxo, carboxy, and epoxy derivatives that are interesting compounds for the flavor and fragrance and pharmaceutical industries. Although variable regioselectivity was observed depending on the substrate and enzyme, oxygenation was preferentially produced at the allylic position in the ring, being especially evident in the reaction with α-ionone, forming 3-hydroxy-α-ionone and/or 3-oxo-α-ionone. Noteworthy were the reactions with damascones, in the course of which some UPOs oxygenated the terminal position of the side chain, forming oxygenated derivatives (i.e., the corresponding alcohol, aldehyde, and carboxylic acid) at C-10, which were predominant in the Agrocybe aegerita UPO reactions, and first reported here.<br />This work was supported by the EnzOx2 (H2020-BBI-PPP-2015-2-1-720297) EU-project and the CSIC (201740E071) project.

Details

ISSN :
15205118
Volume :
68
Issue :
19
Database :
OpenAIRE
Journal :
Journal of agricultural and food chemistry
Accession number :
edsair.doi.dedup.....c721f7df7fa106ec658354c3f9cb794f