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Rational Mutagenesis in the Lid Domain of Ribokinase from E. coli Results in an Order of Magnitude Increase in Activity towards D-arabinose

Development of efficient approaches for the production of medically important nucleosides is a highly relevant challenge for biotechnology. In particular, cascade synthesis of arabinosides would allow relatively easy production of various cytostatic and antiviral drugs. However, the biocatalyst nece...

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Autores principales: Zayats, Evgeniy A., Fateev, Ilya V., Kostromina, Maria A., Abramchik, Yulia A., Lykoshin, Dmitry D., Yurovskaya, Daria O., Timofeev, Vladimir I., Berzina, Maria Ya., Eletskaya, Barbara Z., Konstantinova, Irina D., Esipov, Roman S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9604405/
https://www.ncbi.nlm.nih.gov/pubmed/36293391
http://dx.doi.org/10.3390/ijms232012540
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author Zayats, Evgeniy A.
Fateev, Ilya V.
Kostromina, Maria A.
Abramchik, Yulia A.
Lykoshin, Dmitry D.
Yurovskaya, Daria O.
Timofeev, Vladimir I.
Berzina, Maria Ya.
Eletskaya, Barbara Z.
Konstantinova, Irina D.
Esipov, Roman S.
author_facet Zayats, Evgeniy A.
Fateev, Ilya V.
Kostromina, Maria A.
Abramchik, Yulia A.
Lykoshin, Dmitry D.
Yurovskaya, Daria O.
Timofeev, Vladimir I.
Berzina, Maria Ya.
Eletskaya, Barbara Z.
Konstantinova, Irina D.
Esipov, Roman S.
author_sort Zayats, Evgeniy A.
collection PubMed
description Development of efficient approaches for the production of medically important nucleosides is a highly relevant challenge for biotechnology. In particular, cascade synthesis of arabinosides would allow relatively easy production of various cytostatic and antiviral drugs. However, the biocatalyst necessary for this approach, ribokinase from Escherichia coli (EcoRK), has a very low activity towards D-arabinose, making the synthesis using the state-of-art native enzyme technologically unfeasible. Here, we report the results of our enzyme design project, dedicated to engineering a mutant form of EcoRK with elevated activity towards arabinose. Analysis of the active site structure has allowed us to hypothesize the reasons behind the low EcoRK activity towards arabinose and select feasible mutations. Enzyme assay and kinetic studies have shown that the A98G mutation has caused a large 15-fold increase in k(cat) and 1.5-fold decrease in K(M) for arabinose phosphorylation. As a proof of concept, we have performed the cascade synthesis of 2-chloroadenine arabinoside utilizing the A98G mutant with 10-fold lower amount of enzyme compared to the wild type without any loss of synthesis efficiency. Our results are valuable both for the development of new technologies of synthesis of modified nucleosides and providing insight into the structural reasons behind EcoRK substrate specificity.
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spelling pubmed-96044052022-10-27 Rational Mutagenesis in the Lid Domain of Ribokinase from E. coli Results in an Order of Magnitude Increase in Activity towards D-arabinose Zayats, Evgeniy A. Fateev, Ilya V. Kostromina, Maria A. Abramchik, Yulia A. Lykoshin, Dmitry D. Yurovskaya, Daria O. Timofeev, Vladimir I. Berzina, Maria Ya. Eletskaya, Barbara Z. Konstantinova, Irina D. Esipov, Roman S. Int J Mol Sci Article Development of efficient approaches for the production of medically important nucleosides is a highly relevant challenge for biotechnology. In particular, cascade synthesis of arabinosides would allow relatively easy production of various cytostatic and antiviral drugs. However, the biocatalyst necessary for this approach, ribokinase from Escherichia coli (EcoRK), has a very low activity towards D-arabinose, making the synthesis using the state-of-art native enzyme technologically unfeasible. Here, we report the results of our enzyme design project, dedicated to engineering a mutant form of EcoRK with elevated activity towards arabinose. Analysis of the active site structure has allowed us to hypothesize the reasons behind the low EcoRK activity towards arabinose and select feasible mutations. Enzyme assay and kinetic studies have shown that the A98G mutation has caused a large 15-fold increase in k(cat) and 1.5-fold decrease in K(M) for arabinose phosphorylation. As a proof of concept, we have performed the cascade synthesis of 2-chloroadenine arabinoside utilizing the A98G mutant with 10-fold lower amount of enzyme compared to the wild type without any loss of synthesis efficiency. Our results are valuable both for the development of new technologies of synthesis of modified nucleosides and providing insight into the structural reasons behind EcoRK substrate specificity. MDPI 2022-10-19 /pmc/articles/PMC9604405/ /pubmed/36293391 http://dx.doi.org/10.3390/ijms232012540 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zayats, Evgeniy A.
Fateev, Ilya V.
Kostromina, Maria A.
Abramchik, Yulia A.
Lykoshin, Dmitry D.
Yurovskaya, Daria O.
Timofeev, Vladimir I.
Berzina, Maria Ya.
Eletskaya, Barbara Z.
Konstantinova, Irina D.
Esipov, Roman S.
Rational Mutagenesis in the Lid Domain of Ribokinase from E. coli Results in an Order of Magnitude Increase in Activity towards D-arabinose
title Rational Mutagenesis in the Lid Domain of Ribokinase from E. coli Results in an Order of Magnitude Increase in Activity towards D-arabinose
title_full Rational Mutagenesis in the Lid Domain of Ribokinase from E. coli Results in an Order of Magnitude Increase in Activity towards D-arabinose
title_fullStr Rational Mutagenesis in the Lid Domain of Ribokinase from E. coli Results in an Order of Magnitude Increase in Activity towards D-arabinose
title_full_unstemmed Rational Mutagenesis in the Lid Domain of Ribokinase from E. coli Results in an Order of Magnitude Increase in Activity towards D-arabinose
title_short Rational Mutagenesis in the Lid Domain of Ribokinase from E. coli Results in an Order of Magnitude Increase in Activity towards D-arabinose
title_sort rational mutagenesis in the lid domain of ribokinase from e. coli results in an order of magnitude increase in activity towards d-arabinose
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9604405/
https://www.ncbi.nlm.nih.gov/pubmed/36293391
http://dx.doi.org/10.3390/ijms232012540
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