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Mechanistic and structural basis for inhibition of thymidylate synthase ThyX

Nature has established two mechanistically and structurally unrelated families of thymidylate synthases that produce de novo thymidylate or dTMP, an essential DNA precursor. Representatives of the alternative flavin-dependent thymidylate synthase family, ThyX, are found in a large number of microbia...

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Autores principales: Basta, Tamara, Boum, Yap, Briffotaux, Julien, Becker, Hubert F., Lamarre-Jouenne, Isabelle, Lambry, Jean-Christophe, Skouloubris, Stephane, Liebl, Ursula, Graille, Marc, van Tilbeurgh, Herman, Myllykallio, Hannu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3498832/
https://www.ncbi.nlm.nih.gov/pubmed/23155486
http://dx.doi.org/10.1098/rsob.120120
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author Basta, Tamara
Boum, Yap
Briffotaux, Julien
Becker, Hubert F.
Lamarre-Jouenne, Isabelle
Lambry, Jean-Christophe
Skouloubris, Stephane
Liebl, Ursula
Graille, Marc
van Tilbeurgh, Herman
Myllykallio, Hannu
author_facet Basta, Tamara
Boum, Yap
Briffotaux, Julien
Becker, Hubert F.
Lamarre-Jouenne, Isabelle
Lambry, Jean-Christophe
Skouloubris, Stephane
Liebl, Ursula
Graille, Marc
van Tilbeurgh, Herman
Myllykallio, Hannu
author_sort Basta, Tamara
collection PubMed
description Nature has established two mechanistically and structurally unrelated families of thymidylate synthases that produce de novo thymidylate or dTMP, an essential DNA precursor. Representatives of the alternative flavin-dependent thymidylate synthase family, ThyX, are found in a large number of microbial genomes, but are absent in humans. We have exploited the nucleotide binding pocket of ThyX proteins to identify non-substrate-based tight-binding ThyX inhibitors that inhibited growth of genetically modified Escherichia coli cells dependent on thyX in a manner mimicking a genetic knockout of thymidylate synthase. We also solved the crystal structure of a viral ThyX bound to 2-hydroxy-3-(4-methoxybenzyl)-1,4-naphthoquinone at a resolution of 2.6 Å. This inhibitor was found to bind within the conserved active site of the tetrameric ThyX enzyme, at the interface of two monomers, partially overlapping with the dUMP binding pocket. Our studies provide new chemical tools for investigating the ThyX reaction mechanism and establish a novel mechanistic and structural basis for inhibition of thymidylate synthesis. As essential ThyX proteins are found e.g. in Mycobacterium tuberculosis and Helicobacter pylori, our studies have also potential to pave the way towards the development of new anti-microbial compounds.
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spelling pubmed-34988322012-11-15 Mechanistic and structural basis for inhibition of thymidylate synthase ThyX Basta, Tamara Boum, Yap Briffotaux, Julien Becker, Hubert F. Lamarre-Jouenne, Isabelle Lambry, Jean-Christophe Skouloubris, Stephane Liebl, Ursula Graille, Marc van Tilbeurgh, Herman Myllykallio, Hannu Open Biol Research Nature has established two mechanistically and structurally unrelated families of thymidylate synthases that produce de novo thymidylate or dTMP, an essential DNA precursor. Representatives of the alternative flavin-dependent thymidylate synthase family, ThyX, are found in a large number of microbial genomes, but are absent in humans. We have exploited the nucleotide binding pocket of ThyX proteins to identify non-substrate-based tight-binding ThyX inhibitors that inhibited growth of genetically modified Escherichia coli cells dependent on thyX in a manner mimicking a genetic knockout of thymidylate synthase. We also solved the crystal structure of a viral ThyX bound to 2-hydroxy-3-(4-methoxybenzyl)-1,4-naphthoquinone at a resolution of 2.6 Å. This inhibitor was found to bind within the conserved active site of the tetrameric ThyX enzyme, at the interface of two monomers, partially overlapping with the dUMP binding pocket. Our studies provide new chemical tools for investigating the ThyX reaction mechanism and establish a novel mechanistic and structural basis for inhibition of thymidylate synthesis. As essential ThyX proteins are found e.g. in Mycobacterium tuberculosis and Helicobacter pylori, our studies have also potential to pave the way towards the development of new anti-microbial compounds. The Royal Society 2012-10 /pmc/articles/PMC3498832/ /pubmed/23155486 http://dx.doi.org/10.1098/rsob.120120 Text en http://creativecommons.org/licenses/by/3.0/ © 2012 The Authors. Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/3.0/, which permits unrestricted use, provided the original author and source are credited.
spellingShingle Research
Basta, Tamara
Boum, Yap
Briffotaux, Julien
Becker, Hubert F.
Lamarre-Jouenne, Isabelle
Lambry, Jean-Christophe
Skouloubris, Stephane
Liebl, Ursula
Graille, Marc
van Tilbeurgh, Herman
Myllykallio, Hannu
Mechanistic and structural basis for inhibition of thymidylate synthase ThyX
title Mechanistic and structural basis for inhibition of thymidylate synthase ThyX
title_full Mechanistic and structural basis for inhibition of thymidylate synthase ThyX
title_fullStr Mechanistic and structural basis for inhibition of thymidylate synthase ThyX
title_full_unstemmed Mechanistic and structural basis for inhibition of thymidylate synthase ThyX
title_short Mechanistic and structural basis for inhibition of thymidylate synthase ThyX
title_sort mechanistic and structural basis for inhibition of thymidylate synthase thyx
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3498832/
https://www.ncbi.nlm.nih.gov/pubmed/23155486
http://dx.doi.org/10.1098/rsob.120120
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