Expanding the Substrate Scope of N‐ and O‐Methyltransferases from Plants for Chemoselective Alkylation**

Author:

Jockmann Emely1ORCID,Subrizi Fabiana23ORCID,Mohr Michael K. F.1ORCID,Carter Eve M.2ORCID,Hebecker Pia M.1,Popadić Désirée1,Hailes Helen C.2ORCID,Andexer Jennifer N.1ORCID

Affiliation:

1. Institute of Pharmaceutical Sciences University of Freiburg 79104 Freiburg Germany

2. Department of Chemistry University College London WC1H 0AJ London UK

3. Present address: IDP Pharma 08020 Barcelona Spain

Abstract

AbstractMethylation reactions are of significant interest when generating pharmaceutically active molecules and building blocks for other applications. Synthetic methylating reagents are often toxic and unselective due to their high reactivity. S‐Adenosyl‐l‐methionine (SAM)‐dependent methyltransferases (MTs) present a chemoselective and environmentally friendly alternative. The anthranilate N‐MT from Ruta graveolens (RgANMT) is involved in acridone alkaloid biosynthesis, methylating anthranilate. Although it is known to methylate substrates only at the N‐position, the closest relatives with respect to amino acid sequence similarities of over 60 % are O‐MTs catalysing the methylation reaction of caffeate and derivatives containing only hydroxyl groups (CaOMTs). In this study, we investigated the substrate range of RgANMT and a CaOMT from Prunus persica (PpCaOMT) using compounds with both, an amino‐ and hydroxyl group (aminophenols) as possible methyl group acceptors. For both enzymes, the reaction was highly chemoselective. Furthermore, generating cofactor derivatives in situ enabled the transfer of other alkyl chains onto the aminophenols, leading to an enlarged pool of products. Selected MT reactions were performed at a preparative biocatalytic scale in in vitro and in vivo experiments resulting in yields of up to 62 %.

Funder

Deutsche Forschungsgemeinschaft

European Research Council

Deutsche Bundesstiftung Umwelt

Engineering and Physical Sciences Research Council

Publisher

Wiley

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Catalysis

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