Cargando…

Crystal Structure and Catalytic Mechanism of CouO, a Versatile C-Methyltransferase from Streptomyces rishiriensis

Friedel–Crafts alkylation of aromatic systems is a classic reaction in organic chemistry, for which regiospecific mono-alkylation, however, is generally difficult to achieve. In nature, methyltransferases catalyze the addition of methyl groups to a wide range of biomolecules thereby modulating the p...

Descripción completa

Detalles Bibliográficos
Autores principales: Pavkov-Keller, Tea, Steiner, Kerstin, Faber, Mario, Tengg, Martin, Schwab, Helmut, Gruber-Khadjawi, Mandana, Gruber, Karl
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5289526/
https://www.ncbi.nlm.nih.gov/pubmed/28152088
http://dx.doi.org/10.1371/journal.pone.0171056
_version_ 1782504508454076416
author Pavkov-Keller, Tea
Steiner, Kerstin
Faber, Mario
Tengg, Martin
Schwab, Helmut
Gruber-Khadjawi, Mandana
Gruber, Karl
author_facet Pavkov-Keller, Tea
Steiner, Kerstin
Faber, Mario
Tengg, Martin
Schwab, Helmut
Gruber-Khadjawi, Mandana
Gruber, Karl
author_sort Pavkov-Keller, Tea
collection PubMed
description Friedel–Crafts alkylation of aromatic systems is a classic reaction in organic chemistry, for which regiospecific mono-alkylation, however, is generally difficult to achieve. In nature, methyltransferases catalyze the addition of methyl groups to a wide range of biomolecules thereby modulating the physico-chemical properties of these compounds. Specifically, S-adenosyl-L-methionine dependent C-methyltransferases possess a high potential to serve as biocatalysts in environmentally benign organic syntheses. Here, we report on the high resolution crystal structure of CouO, a C-methyltransferase from Streptomyces rishiriensis involved in the biosynthesis of the antibiotic coumermycin A1. Through molecular docking calculations, site-directed mutagenesis and the comparison with homologous enzymes we identified His120 and Arg121 as key functional residues for the enzymatic activity of this group of C-methyltransferases. The elucidation of the atomic structure and the insight into the catalytic mechanism provide the basis for the (semi)-rational engineering of the enzyme in order to increase the substrate scope as well as to facilitate the acceptance of SAM-analogues as alternative cofactors.
format Online
Article
Text
id pubmed-5289526
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-52895262017-02-17 Crystal Structure and Catalytic Mechanism of CouO, a Versatile C-Methyltransferase from Streptomyces rishiriensis Pavkov-Keller, Tea Steiner, Kerstin Faber, Mario Tengg, Martin Schwab, Helmut Gruber-Khadjawi, Mandana Gruber, Karl PLoS One Research Article Friedel–Crafts alkylation of aromatic systems is a classic reaction in organic chemistry, for which regiospecific mono-alkylation, however, is generally difficult to achieve. In nature, methyltransferases catalyze the addition of methyl groups to a wide range of biomolecules thereby modulating the physico-chemical properties of these compounds. Specifically, S-adenosyl-L-methionine dependent C-methyltransferases possess a high potential to serve as biocatalysts in environmentally benign organic syntheses. Here, we report on the high resolution crystal structure of CouO, a C-methyltransferase from Streptomyces rishiriensis involved in the biosynthesis of the antibiotic coumermycin A1. Through molecular docking calculations, site-directed mutagenesis and the comparison with homologous enzymes we identified His120 and Arg121 as key functional residues for the enzymatic activity of this group of C-methyltransferases. The elucidation of the atomic structure and the insight into the catalytic mechanism provide the basis for the (semi)-rational engineering of the enzyme in order to increase the substrate scope as well as to facilitate the acceptance of SAM-analogues as alternative cofactors. Public Library of Science 2017-02-02 /pmc/articles/PMC5289526/ /pubmed/28152088 http://dx.doi.org/10.1371/journal.pone.0171056 Text en © 2017 Pavkov-Keller et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Pavkov-Keller, Tea
Steiner, Kerstin
Faber, Mario
Tengg, Martin
Schwab, Helmut
Gruber-Khadjawi, Mandana
Gruber, Karl
Crystal Structure and Catalytic Mechanism of CouO, a Versatile C-Methyltransferase from Streptomyces rishiriensis
title Crystal Structure and Catalytic Mechanism of CouO, a Versatile C-Methyltransferase from Streptomyces rishiriensis
title_full Crystal Structure and Catalytic Mechanism of CouO, a Versatile C-Methyltransferase from Streptomyces rishiriensis
title_fullStr Crystal Structure and Catalytic Mechanism of CouO, a Versatile C-Methyltransferase from Streptomyces rishiriensis
title_full_unstemmed Crystal Structure and Catalytic Mechanism of CouO, a Versatile C-Methyltransferase from Streptomyces rishiriensis
title_short Crystal Structure and Catalytic Mechanism of CouO, a Versatile C-Methyltransferase from Streptomyces rishiriensis
title_sort crystal structure and catalytic mechanism of couo, a versatile c-methyltransferase from streptomyces rishiriensis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5289526/
https://www.ncbi.nlm.nih.gov/pubmed/28152088
http://dx.doi.org/10.1371/journal.pone.0171056
work_keys_str_mv AT pavkovkellertea crystalstructureandcatalyticmechanismofcouoaversatilecmethyltransferasefromstreptomycesrishiriensis
AT steinerkerstin crystalstructureandcatalyticmechanismofcouoaversatilecmethyltransferasefromstreptomycesrishiriensis
AT fabermario crystalstructureandcatalyticmechanismofcouoaversatilecmethyltransferasefromstreptomycesrishiriensis
AT tenggmartin crystalstructureandcatalyticmechanismofcouoaversatilecmethyltransferasefromstreptomycesrishiriensis
AT schwabhelmut crystalstructureandcatalyticmechanismofcouoaversatilecmethyltransferasefromstreptomycesrishiriensis
AT gruberkhadjawimandana crystalstructureandcatalyticmechanismofcouoaversatilecmethyltransferasefromstreptomycesrishiriensis
AT gruberkarl crystalstructureandcatalyticmechanismofcouoaversatilecmethyltransferasefromstreptomycesrishiriensis