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Histone methylation changes are required for life cycle progression in the human parasite Schistosoma mansoni

Epigenetic mechanisms and chromatin structure play an important role in development. Their impact is therefore expected to be strong in parasites with complex life cycles and multiple, strikingly different, developmental stages, i.e. developmental plasticity. Some studies have already described how...

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Autores principales: Roquis, David, Taudt, Aaron, Geyer, Kathrin K., Padalino, Gilda, Hoffmann, Karl F., Holroyd, Nancy, Berriman, Matt, Aliaga, Benoît, Chaparro, Cristian, Grunau, Christoph, Augusto, Ronaldo de Carvalho
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5983875/
https://www.ncbi.nlm.nih.gov/pubmed/29782530
http://dx.doi.org/10.1371/journal.ppat.1007066
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author Roquis, David
Taudt, Aaron
Geyer, Kathrin K.
Padalino, Gilda
Hoffmann, Karl F.
Holroyd, Nancy
Berriman, Matt
Aliaga, Benoît
Chaparro, Cristian
Grunau, Christoph
Augusto, Ronaldo de Carvalho
author_facet Roquis, David
Taudt, Aaron
Geyer, Kathrin K.
Padalino, Gilda
Hoffmann, Karl F.
Holroyd, Nancy
Berriman, Matt
Aliaga, Benoît
Chaparro, Cristian
Grunau, Christoph
Augusto, Ronaldo de Carvalho
author_sort Roquis, David
collection PubMed
description Epigenetic mechanisms and chromatin structure play an important role in development. Their impact is therefore expected to be strong in parasites with complex life cycles and multiple, strikingly different, developmental stages, i.e. developmental plasticity. Some studies have already described how the chromatin structure, through histone modifications, varies from a developmental stage to another in a few unicellular parasites. While H3K4me3 profiles remain relatively constant, H3K27 trimethylation and bivalent methylation show strong variation. Inhibitors (A366 and GSK343) of H3K27 histone methyltransferase activity in S. mansoni efficiently blocked miracidium to sporocyst transition indicating that H3K27 trimethylation is required for life cycle progression. As S. mansoni is a multicellular parasite that significantly affects both the health and economy of endemic areas, a better understanding of fluke developmental processes within the definitive host will likely highlight novel disease control strategies. Towards this goal, we also studied H4K20me1 in female cercariae and adults. In particular, we found that bivalent trimethylation of H3K4 and H3K27 at the transcription start site of genes is a landmark of the cercarial stage. In cercariae, H3K27me3 presence and strong enrichment in H4K20me1 over long regions (10–100 kb) is associated with development related genes. Here, we provide a broad overview of the chromatin structure of a metazoan parasite throughout its most important lifecycle stages. The five developmental stages studied here present distinct chromatin structures, indicating that histone methylation plays an important role during development. Hence, components of the histone methylation (and demethylation) machinery may provide suitable Schistosomiasis control targets.
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spelling pubmed-59838752018-06-17 Histone methylation changes are required for life cycle progression in the human parasite Schistosoma mansoni Roquis, David Taudt, Aaron Geyer, Kathrin K. Padalino, Gilda Hoffmann, Karl F. Holroyd, Nancy Berriman, Matt Aliaga, Benoît Chaparro, Cristian Grunau, Christoph Augusto, Ronaldo de Carvalho PLoS Pathog Research Article Epigenetic mechanisms and chromatin structure play an important role in development. Their impact is therefore expected to be strong in parasites with complex life cycles and multiple, strikingly different, developmental stages, i.e. developmental plasticity. Some studies have already described how the chromatin structure, through histone modifications, varies from a developmental stage to another in a few unicellular parasites. While H3K4me3 profiles remain relatively constant, H3K27 trimethylation and bivalent methylation show strong variation. Inhibitors (A366 and GSK343) of H3K27 histone methyltransferase activity in S. mansoni efficiently blocked miracidium to sporocyst transition indicating that H3K27 trimethylation is required for life cycle progression. As S. mansoni is a multicellular parasite that significantly affects both the health and economy of endemic areas, a better understanding of fluke developmental processes within the definitive host will likely highlight novel disease control strategies. Towards this goal, we also studied H4K20me1 in female cercariae and adults. In particular, we found that bivalent trimethylation of H3K4 and H3K27 at the transcription start site of genes is a landmark of the cercarial stage. In cercariae, H3K27me3 presence and strong enrichment in H4K20me1 over long regions (10–100 kb) is associated with development related genes. Here, we provide a broad overview of the chromatin structure of a metazoan parasite throughout its most important lifecycle stages. The five developmental stages studied here present distinct chromatin structures, indicating that histone methylation plays an important role during development. Hence, components of the histone methylation (and demethylation) machinery may provide suitable Schistosomiasis control targets. Public Library of Science 2018-05-21 /pmc/articles/PMC5983875/ /pubmed/29782530 http://dx.doi.org/10.1371/journal.ppat.1007066 Text en © 2018 Roquis 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Roquis, David
Taudt, Aaron
Geyer, Kathrin K.
Padalino, Gilda
Hoffmann, Karl F.
Holroyd, Nancy
Berriman, Matt
Aliaga, Benoît
Chaparro, Cristian
Grunau, Christoph
Augusto, Ronaldo de Carvalho
Histone methylation changes are required for life cycle progression in the human parasite Schistosoma mansoni
title Histone methylation changes are required for life cycle progression in the human parasite Schistosoma mansoni
title_full Histone methylation changes are required for life cycle progression in the human parasite Schistosoma mansoni
title_fullStr Histone methylation changes are required for life cycle progression in the human parasite Schistosoma mansoni
title_full_unstemmed Histone methylation changes are required for life cycle progression in the human parasite Schistosoma mansoni
title_short Histone methylation changes are required for life cycle progression in the human parasite Schistosoma mansoni
title_sort histone methylation changes are required for life cycle progression in the human parasite schistosoma mansoni
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5983875/
https://www.ncbi.nlm.nih.gov/pubmed/29782530
http://dx.doi.org/10.1371/journal.ppat.1007066
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