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Novel insight into the reaction of nitro, nitroso and hydroxylamino benzothiazinones and of benzoxacinones with Mycobacterium tuberculosis DprE1

Nitro-substituted 1,3-benzothiazinones (nitro-BTZs) are mechanism-based covalent inhibitors of Mycobacterium tuberculosis decaprenylphosphoryl-β-D-ribose-2′-oxidase (DprE1) with strong antimycobacterial properties. We prepared a number of oxidized and reduced forms of nitro-BTZs to probe the mechani...

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Autores principales: Richter, Adrian, Rudolph, Ines, Möllmann, Ute, Voigt, Kerstin, Chung, Chun-wa, Singh, Onkar M. P., Rees, Michael, Mendoza-Losana, Alfonso, Bates, Robert, Ballell, Lluís, Batt, Sarah, Veerapen, Natacha, Fütterer, Klaus, Besra, Gurdyal, Imming, Peter, Argyrou, Argyrides
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6128881/
https://www.ncbi.nlm.nih.gov/pubmed/30194385
http://dx.doi.org/10.1038/s41598-018-31316-6
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author Richter, Adrian
Rudolph, Ines
Möllmann, Ute
Voigt, Kerstin
Chung, Chun-wa
Singh, Onkar M. P.
Rees, Michael
Mendoza-Losana, Alfonso
Bates, Robert
Ballell, Lluís
Batt, Sarah
Veerapen, Natacha
Fütterer, Klaus
Besra, Gurdyal
Imming, Peter
Argyrou, Argyrides
author_facet Richter, Adrian
Rudolph, Ines
Möllmann, Ute
Voigt, Kerstin
Chung, Chun-wa
Singh, Onkar M. P.
Rees, Michael
Mendoza-Losana, Alfonso
Bates, Robert
Ballell, Lluís
Batt, Sarah
Veerapen, Natacha
Fütterer, Klaus
Besra, Gurdyal
Imming, Peter
Argyrou, Argyrides
author_sort Richter, Adrian
collection PubMed
description Nitro-substituted 1,3-benzothiazinones (nitro-BTZs) are mechanism-based covalent inhibitors of Mycobacterium tuberculosis decaprenylphosphoryl-β-D-ribose-2′-oxidase (DprE1) with strong antimycobacterial properties. We prepared a number of oxidized and reduced forms of nitro-BTZs to probe the mechanism of inactivation of the enzyme and to identify opportunities for further chemistry. The kinetics of inactivation of DprE1 was examined using an enzymatic assay that monitored reaction progress up to 100 min, permitting compound ranking according to k(inact)/K(i) values. The side-chain at the 2-position and heteroatom identity at the 1-position of the BTZs were found to be important for inhibitory activity. We obtained crystal structures with several compounds covalently bound. The data suggest that steps upstream from the covalent end-points are likely the key determinants of potency and reactivity. The results of protein mass spectrometry using a 7-chloro-nitro-BTZ suggest that nucleophilic reactions at the 7-position do not operate and support a previously proposed mechanism in which BTZ activation by a reduced flavin intermediate is required. Unexpectedly, a hydroxylamino-BTZ showed time-dependent inhibition and mass spectrometry corroborated that this hydroxylamino-BTZ is a mechanism-based suicide inhibitor of DprE1. With this BTZ derivative, we propose a new covalent mechanism of inhibition of DprE1 that takes advantage of the oxidation cycle of the enzyme.
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spelling pubmed-61288812018-09-10 Novel insight into the reaction of nitro, nitroso and hydroxylamino benzothiazinones and of benzoxacinones with Mycobacterium tuberculosis DprE1 Richter, Adrian Rudolph, Ines Möllmann, Ute Voigt, Kerstin Chung, Chun-wa Singh, Onkar M. P. Rees, Michael Mendoza-Losana, Alfonso Bates, Robert Ballell, Lluís Batt, Sarah Veerapen, Natacha Fütterer, Klaus Besra, Gurdyal Imming, Peter Argyrou, Argyrides Sci Rep Article Nitro-substituted 1,3-benzothiazinones (nitro-BTZs) are mechanism-based covalent inhibitors of Mycobacterium tuberculosis decaprenylphosphoryl-β-D-ribose-2′-oxidase (DprE1) with strong antimycobacterial properties. We prepared a number of oxidized and reduced forms of nitro-BTZs to probe the mechanism of inactivation of the enzyme and to identify opportunities for further chemistry. The kinetics of inactivation of DprE1 was examined using an enzymatic assay that monitored reaction progress up to 100 min, permitting compound ranking according to k(inact)/K(i) values. The side-chain at the 2-position and heteroatom identity at the 1-position of the BTZs were found to be important for inhibitory activity. We obtained crystal structures with several compounds covalently bound. The data suggest that steps upstream from the covalent end-points are likely the key determinants of potency and reactivity. The results of protein mass spectrometry using a 7-chloro-nitro-BTZ suggest that nucleophilic reactions at the 7-position do not operate and support a previously proposed mechanism in which BTZ activation by a reduced flavin intermediate is required. Unexpectedly, a hydroxylamino-BTZ showed time-dependent inhibition and mass spectrometry corroborated that this hydroxylamino-BTZ is a mechanism-based suicide inhibitor of DprE1. With this BTZ derivative, we propose a new covalent mechanism of inhibition of DprE1 that takes advantage of the oxidation cycle of the enzyme. Nature Publishing Group UK 2018-09-07 /pmc/articles/PMC6128881/ /pubmed/30194385 http://dx.doi.org/10.1038/s41598-018-31316-6 Text en © The Author(s) 2018 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Richter, Adrian
Rudolph, Ines
Möllmann, Ute
Voigt, Kerstin
Chung, Chun-wa
Singh, Onkar M. P.
Rees, Michael
Mendoza-Losana, Alfonso
Bates, Robert
Ballell, Lluís
Batt, Sarah
Veerapen, Natacha
Fütterer, Klaus
Besra, Gurdyal
Imming, Peter
Argyrou, Argyrides
Novel insight into the reaction of nitro, nitroso and hydroxylamino benzothiazinones and of benzoxacinones with Mycobacterium tuberculosis DprE1
title Novel insight into the reaction of nitro, nitroso and hydroxylamino benzothiazinones and of benzoxacinones with Mycobacterium tuberculosis DprE1
title_full Novel insight into the reaction of nitro, nitroso and hydroxylamino benzothiazinones and of benzoxacinones with Mycobacterium tuberculosis DprE1
title_fullStr Novel insight into the reaction of nitro, nitroso and hydroxylamino benzothiazinones and of benzoxacinones with Mycobacterium tuberculosis DprE1
title_full_unstemmed Novel insight into the reaction of nitro, nitroso and hydroxylamino benzothiazinones and of benzoxacinones with Mycobacterium tuberculosis DprE1
title_short Novel insight into the reaction of nitro, nitroso and hydroxylamino benzothiazinones and of benzoxacinones with Mycobacterium tuberculosis DprE1
title_sort novel insight into the reaction of nitro, nitroso and hydroxylamino benzothiazinones and of benzoxacinones with mycobacterium tuberculosis dpre1
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6128881/
https://www.ncbi.nlm.nih.gov/pubmed/30194385
http://dx.doi.org/10.1038/s41598-018-31316-6
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