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Structural Basis for the Inhibition of Histone Deacetylase 8 (HDAC8), a Key Epigenetic Player in the Blood Fluke Schistosoma mansoni

The treatment of schistosomiasis, a disease caused by blood flukes parasites of the Schistosoma genus, depends on the intensive use of a single drug, praziquantel, which increases the likelihood of the development of drug-resistant parasite strains and renders the search for new drugs a strategic pr...

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Autores principales: Marek, Martin, Kannan, Srinivasaraghavan, Hauser, Alexander-Thomas, Moraes Mourão, Marina, Caby, Stéphanie, Cura, Vincent, Stolfa, Diana A., Schmidtkunz, Karin, Lancelot, Julien, Andrade, Luiza, Renaud, Jean-Paul, Oliveira, Guilherme, Sippl, Wolfgang, Jung, Manfred, Cavarelli, Jean, Pierce, Raymond J., Romier, Christophe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3784479/
https://www.ncbi.nlm.nih.gov/pubmed/24086136
http://dx.doi.org/10.1371/journal.ppat.1003645
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author Marek, Martin
Kannan, Srinivasaraghavan
Hauser, Alexander-Thomas
Moraes Mourão, Marina
Caby, Stéphanie
Cura, Vincent
Stolfa, Diana A.
Schmidtkunz, Karin
Lancelot, Julien
Andrade, Luiza
Renaud, Jean-Paul
Oliveira, Guilherme
Sippl, Wolfgang
Jung, Manfred
Cavarelli, Jean
Pierce, Raymond J.
Romier, Christophe
author_facet Marek, Martin
Kannan, Srinivasaraghavan
Hauser, Alexander-Thomas
Moraes Mourão, Marina
Caby, Stéphanie
Cura, Vincent
Stolfa, Diana A.
Schmidtkunz, Karin
Lancelot, Julien
Andrade, Luiza
Renaud, Jean-Paul
Oliveira, Guilherme
Sippl, Wolfgang
Jung, Manfred
Cavarelli, Jean
Pierce, Raymond J.
Romier, Christophe
author_sort Marek, Martin
collection PubMed
description The treatment of schistosomiasis, a disease caused by blood flukes parasites of the Schistosoma genus, depends on the intensive use of a single drug, praziquantel, which increases the likelihood of the development of drug-resistant parasite strains and renders the search for new drugs a strategic priority. Currently, inhibitors of human epigenetic enzymes are actively investigated as novel anti-cancer drugs and have the potential to be used as new anti-parasitic agents. Here, we report that Schistosoma mansoni histone deacetylase 8 (smHDAC8), the most expressed class I HDAC isotype in this organism, is a functional acetyl-L-lysine deacetylase that plays an important role in parasite infectivity. The crystal structure of smHDAC8 shows that this enzyme adopts a canonical α/β HDAC fold, with specific solvent exposed loops corresponding to insertions in the schistosome HDAC8 sequence. Importantly, structures of smHDAC8 in complex with generic HDAC inhibitors revealed specific structural changes in the smHDAC8 active site that cannot be accommodated by human HDACs. Using a structure-based approach, we identified several small-molecule inhibitors that build on these specificities. These molecules exhibit an inhibitory effect on smHDAC8 but show reduced affinity for human HDACs. Crucially, we show that a newly identified smHDAC8 inhibitor has the capacity to induce apoptosis and mortality in schistosomes. Taken together, our biological and structural findings define the framework for the rational design of small-molecule inhibitors specifically interfering with schistosome epigenetic mechanisms, and further support an anti-parasitic epigenome targeting strategy to treat neglected diseases caused by eukaryotic pathogens.
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spelling pubmed-37844792013-10-01 Structural Basis for the Inhibition of Histone Deacetylase 8 (HDAC8), a Key Epigenetic Player in the Blood Fluke Schistosoma mansoni Marek, Martin Kannan, Srinivasaraghavan Hauser, Alexander-Thomas Moraes Mourão, Marina Caby, Stéphanie Cura, Vincent Stolfa, Diana A. Schmidtkunz, Karin Lancelot, Julien Andrade, Luiza Renaud, Jean-Paul Oliveira, Guilherme Sippl, Wolfgang Jung, Manfred Cavarelli, Jean Pierce, Raymond J. Romier, Christophe PLoS Pathog Research Article The treatment of schistosomiasis, a disease caused by blood flukes parasites of the Schistosoma genus, depends on the intensive use of a single drug, praziquantel, which increases the likelihood of the development of drug-resistant parasite strains and renders the search for new drugs a strategic priority. Currently, inhibitors of human epigenetic enzymes are actively investigated as novel anti-cancer drugs and have the potential to be used as new anti-parasitic agents. Here, we report that Schistosoma mansoni histone deacetylase 8 (smHDAC8), the most expressed class I HDAC isotype in this organism, is a functional acetyl-L-lysine deacetylase that plays an important role in parasite infectivity. The crystal structure of smHDAC8 shows that this enzyme adopts a canonical α/β HDAC fold, with specific solvent exposed loops corresponding to insertions in the schistosome HDAC8 sequence. Importantly, structures of smHDAC8 in complex with generic HDAC inhibitors revealed specific structural changes in the smHDAC8 active site that cannot be accommodated by human HDACs. Using a structure-based approach, we identified several small-molecule inhibitors that build on these specificities. These molecules exhibit an inhibitory effect on smHDAC8 but show reduced affinity for human HDACs. Crucially, we show that a newly identified smHDAC8 inhibitor has the capacity to induce apoptosis and mortality in schistosomes. Taken together, our biological and structural findings define the framework for the rational design of small-molecule inhibitors specifically interfering with schistosome epigenetic mechanisms, and further support an anti-parasitic epigenome targeting strategy to treat neglected diseases caused by eukaryotic pathogens. Public Library of Science 2013-09-26 /pmc/articles/PMC3784479/ /pubmed/24086136 http://dx.doi.org/10.1371/journal.ppat.1003645 Text en © 2013 Marek et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Marek, Martin
Kannan, Srinivasaraghavan
Hauser, Alexander-Thomas
Moraes Mourão, Marina
Caby, Stéphanie
Cura, Vincent
Stolfa, Diana A.
Schmidtkunz, Karin
Lancelot, Julien
Andrade, Luiza
Renaud, Jean-Paul
Oliveira, Guilherme
Sippl, Wolfgang
Jung, Manfred
Cavarelli, Jean
Pierce, Raymond J.
Romier, Christophe
Structural Basis for the Inhibition of Histone Deacetylase 8 (HDAC8), a Key Epigenetic Player in the Blood Fluke Schistosoma mansoni
title Structural Basis for the Inhibition of Histone Deacetylase 8 (HDAC8), a Key Epigenetic Player in the Blood Fluke Schistosoma mansoni
title_full Structural Basis for the Inhibition of Histone Deacetylase 8 (HDAC8), a Key Epigenetic Player in the Blood Fluke Schistosoma mansoni
title_fullStr Structural Basis for the Inhibition of Histone Deacetylase 8 (HDAC8), a Key Epigenetic Player in the Blood Fluke Schistosoma mansoni
title_full_unstemmed Structural Basis for the Inhibition of Histone Deacetylase 8 (HDAC8), a Key Epigenetic Player in the Blood Fluke Schistosoma mansoni
title_short Structural Basis for the Inhibition of Histone Deacetylase 8 (HDAC8), a Key Epigenetic Player in the Blood Fluke Schistosoma mansoni
title_sort structural basis for the inhibition of histone deacetylase 8 (hdac8), a key epigenetic player in the blood fluke schistosoma mansoni
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3784479/
https://www.ncbi.nlm.nih.gov/pubmed/24086136
http://dx.doi.org/10.1371/journal.ppat.1003645
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