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Genomic and Phenotypic Characterization of Experimentally Selected Resistant Leishmania donovani Reveals a Role for Dynamin-1-Like Protein in the Mechanism of Resistance to a Novel Antileishmanial Compound

The implementation of prospective drug resistance (DR) studies in the research-and-development (R&D) pipeline is a common practice for many infectious diseases but not for neglected tropical diseases (NTDs). Here, we explored and demonstrated the importance of this approach using as paradigms Le...

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Autores principales: Hefnawy, Aya, Negreira, Gabriel, Jara, Marlene, Cotton, James A., Maes, Ilse, D’Haenens, Erika, Imamura, Hideo, Cuypers, Bart, Monsieurs, Pieter, Mouchtoglou, Christina, De Winter, Hans, Pintelon, Isabel, Timmermans, Jean-Pierre, Berriman, Matt, Sanders, Mandy, Martin, Julio, de Muylder, Geraldine, Dujardin, Jean-Claude, Sterckx, Yann G.-J., Domagalska, Malgorzata Anna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8749414/
https://www.ncbi.nlm.nih.gov/pubmed/35012338
http://dx.doi.org/10.1128/mbio.03264-21
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author Hefnawy, Aya
Negreira, Gabriel
Jara, Marlene
Cotton, James A.
Maes, Ilse
D’Haenens, Erika
Imamura, Hideo
Cuypers, Bart
Monsieurs, Pieter
Mouchtoglou, Christina
De Winter, Hans
Pintelon, Isabel
Timmermans, Jean-Pierre
Berriman, Matt
Sanders, Mandy
Martin, Julio
de Muylder, Geraldine
Dujardin, Jean-Claude
Sterckx, Yann G.-J.
Domagalska, Malgorzata Anna
author_facet Hefnawy, Aya
Negreira, Gabriel
Jara, Marlene
Cotton, James A.
Maes, Ilse
D’Haenens, Erika
Imamura, Hideo
Cuypers, Bart
Monsieurs, Pieter
Mouchtoglou, Christina
De Winter, Hans
Pintelon, Isabel
Timmermans, Jean-Pierre
Berriman, Matt
Sanders, Mandy
Martin, Julio
de Muylder, Geraldine
Dujardin, Jean-Claude
Sterckx, Yann G.-J.
Domagalska, Malgorzata Anna
author_sort Hefnawy, Aya
collection PubMed
description The implementation of prospective drug resistance (DR) studies in the research-and-development (R&D) pipeline is a common practice for many infectious diseases but not for neglected tropical diseases (NTDs). Here, we explored and demonstrated the importance of this approach using as paradigms Leishmania donovani, the etiological agent of visceral leishmaniasis (VL), and TCMDC-143345, a promising compound of the GlaxoSmithKline (GSK) “Leishbox” to treat VL. We experimentally selected resistance to TCMDC-143345 in vitro and characterized resistant parasites at the genomic and phenotypic levels. We found that it took more time to develop resistance to TCMDC-143345 than to other drugs in clinical use and that there was no cross-resistance to these drugs, suggesting a new and unique mechanism. By whole-genome sequencing, we found two mutations in the gene encoding the L. donovani dynamin-1-like protein (LdoDLP1) that were fixed at the highest drug pressure. Through phylogenetic analysis, we identified LdoDLP1 as a family member of the dynamin-related proteins, a group of proteins that impacts the shapes of biological membranes by mediating fusion and fission events, with a putative role in mitochondrial fission. We found that L. donovani lines genetically engineered to harbor the two identified LdoDLP1 mutations were resistant to TCMDC-143345 and displayed altered mitochondrial properties. By homology modeling, we showed how the two LdoDLP1 mutations may influence protein structure and function. Taken together, our data reveal a clear involvement of LdoDLP1 in the adaptation/reduced susceptibility of L. donovani to TCMDC-143345.
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spelling pubmed-87494142022-01-24 Genomic and Phenotypic Characterization of Experimentally Selected Resistant Leishmania donovani Reveals a Role for Dynamin-1-Like Protein in the Mechanism of Resistance to a Novel Antileishmanial Compound Hefnawy, Aya Negreira, Gabriel Jara, Marlene Cotton, James A. Maes, Ilse D’Haenens, Erika Imamura, Hideo Cuypers, Bart Monsieurs, Pieter Mouchtoglou, Christina De Winter, Hans Pintelon, Isabel Timmermans, Jean-Pierre Berriman, Matt Sanders, Mandy Martin, Julio de Muylder, Geraldine Dujardin, Jean-Claude Sterckx, Yann G.-J. Domagalska, Malgorzata Anna mBio Research Article The implementation of prospective drug resistance (DR) studies in the research-and-development (R&D) pipeline is a common practice for many infectious diseases but not for neglected tropical diseases (NTDs). Here, we explored and demonstrated the importance of this approach using as paradigms Leishmania donovani, the etiological agent of visceral leishmaniasis (VL), and TCMDC-143345, a promising compound of the GlaxoSmithKline (GSK) “Leishbox” to treat VL. We experimentally selected resistance to TCMDC-143345 in vitro and characterized resistant parasites at the genomic and phenotypic levels. We found that it took more time to develop resistance to TCMDC-143345 than to other drugs in clinical use and that there was no cross-resistance to these drugs, suggesting a new and unique mechanism. By whole-genome sequencing, we found two mutations in the gene encoding the L. donovani dynamin-1-like protein (LdoDLP1) that were fixed at the highest drug pressure. Through phylogenetic analysis, we identified LdoDLP1 as a family member of the dynamin-related proteins, a group of proteins that impacts the shapes of biological membranes by mediating fusion and fission events, with a putative role in mitochondrial fission. We found that L. donovani lines genetically engineered to harbor the two identified LdoDLP1 mutations were resistant to TCMDC-143345 and displayed altered mitochondrial properties. By homology modeling, we showed how the two LdoDLP1 mutations may influence protein structure and function. Taken together, our data reveal a clear involvement of LdoDLP1 in the adaptation/reduced susceptibility of L. donovani to TCMDC-143345. American Society for Microbiology 2022-01-11 /pmc/articles/PMC8749414/ /pubmed/35012338 http://dx.doi.org/10.1128/mbio.03264-21 Text en Copyright © 2022 Hefnawy et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Hefnawy, Aya
Negreira, Gabriel
Jara, Marlene
Cotton, James A.
Maes, Ilse
D’Haenens, Erika
Imamura, Hideo
Cuypers, Bart
Monsieurs, Pieter
Mouchtoglou, Christina
De Winter, Hans
Pintelon, Isabel
Timmermans, Jean-Pierre
Berriman, Matt
Sanders, Mandy
Martin, Julio
de Muylder, Geraldine
Dujardin, Jean-Claude
Sterckx, Yann G.-J.
Domagalska, Malgorzata Anna
Genomic and Phenotypic Characterization of Experimentally Selected Resistant Leishmania donovani Reveals a Role for Dynamin-1-Like Protein in the Mechanism of Resistance to a Novel Antileishmanial Compound
title Genomic and Phenotypic Characterization of Experimentally Selected Resistant Leishmania donovani Reveals a Role for Dynamin-1-Like Protein in the Mechanism of Resistance to a Novel Antileishmanial Compound
title_full Genomic and Phenotypic Characterization of Experimentally Selected Resistant Leishmania donovani Reveals a Role for Dynamin-1-Like Protein in the Mechanism of Resistance to a Novel Antileishmanial Compound
title_fullStr Genomic and Phenotypic Characterization of Experimentally Selected Resistant Leishmania donovani Reveals a Role for Dynamin-1-Like Protein in the Mechanism of Resistance to a Novel Antileishmanial Compound
title_full_unstemmed Genomic and Phenotypic Characterization of Experimentally Selected Resistant Leishmania donovani Reveals a Role for Dynamin-1-Like Protein in the Mechanism of Resistance to a Novel Antileishmanial Compound
title_short Genomic and Phenotypic Characterization of Experimentally Selected Resistant Leishmania donovani Reveals a Role for Dynamin-1-Like Protein in the Mechanism of Resistance to a Novel Antileishmanial Compound
title_sort genomic and phenotypic characterization of experimentally selected resistant leishmania donovani reveals a role for dynamin-1-like protein in the mechanism of resistance to a novel antileishmanial compound
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8749414/
https://www.ncbi.nlm.nih.gov/pubmed/35012338
http://dx.doi.org/10.1128/mbio.03264-21
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