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Structure-based discovery of the first non-covalent inhibitors of Leishmania major tryparedoxin peroxidase by high throughput docking

Leishmaniasis is a neglected vector-born disease caused by a protozoan of the genus Leishmania and affecting more than 1.300.000 people worldwide. The couple tryparedoxin/tryparedoxin peroxidase is essential for parasite survival in the host since it neutralizes the hydrogen peroxide produced by mac...

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Autores principales: Brindisi, Margherita, Brogi, Simone, Relitti, Nicola, Vallone, Alessandra, Butini, Stefania, Gemma, Sandra, Novellino, Ettore, Colotti, Gianni, Angiulli, Gabriella, Di Chiaro, Francesco, Fiorillo, Annarita, Ilari, Andrea, Campiani, Giuseppe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4423475/
https://www.ncbi.nlm.nih.gov/pubmed/25951439
http://dx.doi.org/10.1038/srep09705
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author Brindisi, Margherita
Brogi, Simone
Relitti, Nicola
Vallone, Alessandra
Butini, Stefania
Gemma, Sandra
Novellino, Ettore
Colotti, Gianni
Angiulli, Gabriella
Di Chiaro, Francesco
Fiorillo, Annarita
Ilari, Andrea
Campiani, Giuseppe
author_facet Brindisi, Margherita
Brogi, Simone
Relitti, Nicola
Vallone, Alessandra
Butini, Stefania
Gemma, Sandra
Novellino, Ettore
Colotti, Gianni
Angiulli, Gabriella
Di Chiaro, Francesco
Fiorillo, Annarita
Ilari, Andrea
Campiani, Giuseppe
author_sort Brindisi, Margherita
collection PubMed
description Leishmaniasis is a neglected vector-born disease caused by a protozoan of the genus Leishmania and affecting more than 1.300.000 people worldwide. The couple tryparedoxin/tryparedoxin peroxidase is essential for parasite survival in the host since it neutralizes the hydrogen peroxide produced by macrophages during the infection. Herein we report a study aimed at discovering the first class of compounds able to non-covalently inhibit tryparedoxin peroxidase. We have solved the high-resolution structure of Tryparedoxin peroxidase I from Leishmania major (LmTXNPx) in the reduced state and in fully folded conformation. A first series of compounds able to inhibit LmTXNPx was identified by means of the high throughput docking technique. The inhibitory activity of these compounds was validated by a Horseradish peroxidase-based enzymatic assay and their affinity for LmTXNPx calculated by surface plasmon resonance experiments. On the basis of these results, the analysis of the enzyme-inhibitor docked models allowed us to rationally design and synthesize a series of N,N-disubstituted 3-aminomethyl quinolones. These compounds showed an inhibitory potency against LmTXNPx in the micromolar range. Among them, compound 12 represents the first non-covalent LmTXNPx inhibitor reported to date and could pave the way to the discovery of a new class of drugs against leishmaniasis.
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spelling pubmed-44234752015-05-13 Structure-based discovery of the first non-covalent inhibitors of Leishmania major tryparedoxin peroxidase by high throughput docking Brindisi, Margherita Brogi, Simone Relitti, Nicola Vallone, Alessandra Butini, Stefania Gemma, Sandra Novellino, Ettore Colotti, Gianni Angiulli, Gabriella Di Chiaro, Francesco Fiorillo, Annarita Ilari, Andrea Campiani, Giuseppe Sci Rep Article Leishmaniasis is a neglected vector-born disease caused by a protozoan of the genus Leishmania and affecting more than 1.300.000 people worldwide. The couple tryparedoxin/tryparedoxin peroxidase is essential for parasite survival in the host since it neutralizes the hydrogen peroxide produced by macrophages during the infection. Herein we report a study aimed at discovering the first class of compounds able to non-covalently inhibit tryparedoxin peroxidase. We have solved the high-resolution structure of Tryparedoxin peroxidase I from Leishmania major (LmTXNPx) in the reduced state and in fully folded conformation. A first series of compounds able to inhibit LmTXNPx was identified by means of the high throughput docking technique. The inhibitory activity of these compounds was validated by a Horseradish peroxidase-based enzymatic assay and their affinity for LmTXNPx calculated by surface plasmon resonance experiments. On the basis of these results, the analysis of the enzyme-inhibitor docked models allowed us to rationally design and synthesize a series of N,N-disubstituted 3-aminomethyl quinolones. These compounds showed an inhibitory potency against LmTXNPx in the micromolar range. Among them, compound 12 represents the first non-covalent LmTXNPx inhibitor reported to date and could pave the way to the discovery of a new class of drugs against leishmaniasis. Nature Publishing Group 2015-05-07 /pmc/articles/PMC4423475/ /pubmed/25951439 http://dx.doi.org/10.1038/srep09705 Text en Copyright © 2015, Macmillan Publishers Limited. All rights reserved http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder in order to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Brindisi, Margherita
Brogi, Simone
Relitti, Nicola
Vallone, Alessandra
Butini, Stefania
Gemma, Sandra
Novellino, Ettore
Colotti, Gianni
Angiulli, Gabriella
Di Chiaro, Francesco
Fiorillo, Annarita
Ilari, Andrea
Campiani, Giuseppe
Structure-based discovery of the first non-covalent inhibitors of Leishmania major tryparedoxin peroxidase by high throughput docking
title Structure-based discovery of the first non-covalent inhibitors of Leishmania major tryparedoxin peroxidase by high throughput docking
title_full Structure-based discovery of the first non-covalent inhibitors of Leishmania major tryparedoxin peroxidase by high throughput docking
title_fullStr Structure-based discovery of the first non-covalent inhibitors of Leishmania major tryparedoxin peroxidase by high throughput docking
title_full_unstemmed Structure-based discovery of the first non-covalent inhibitors of Leishmania major tryparedoxin peroxidase by high throughput docking
title_short Structure-based discovery of the first non-covalent inhibitors of Leishmania major tryparedoxin peroxidase by high throughput docking
title_sort structure-based discovery of the first non-covalent inhibitors of leishmania major tryparedoxin peroxidase by high throughput docking
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4423475/
https://www.ncbi.nlm.nih.gov/pubmed/25951439
http://dx.doi.org/10.1038/srep09705
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