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Epigenetic Changes Modulate Schistosome Egg Formation and Are a Novel Target for Reducing Transmission of Schistosomiasis

Treatment and control of schistosomiasis relies on the only available drug, praziquantel, and the search for alternative chemotherapeutic agents is therefore urgent. Egg production is required for the transmission and immunopathology of schistosomiasis and females of S. mansoni lay 300 eggs daily. A...

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Autores principales: Carneiro, Vitor Coutinho, de Abreu da Silva, Isabel Caetano, Torres, Eduardo José Lopes, Caby, Stephany, Lancelot, Julien, Vanderstraete, Mathieu, Furdas, Silviya D., Jung, Manfred, Pierce, Raymond J., Fantappié, Marcelo Rosado
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4014452/
https://www.ncbi.nlm.nih.gov/pubmed/24809504
http://dx.doi.org/10.1371/journal.ppat.1004116
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author Carneiro, Vitor Coutinho
de Abreu da Silva, Isabel Caetano
Torres, Eduardo José Lopes
Caby, Stephany
Lancelot, Julien
Vanderstraete, Mathieu
Furdas, Silviya D.
Jung, Manfred
Pierce, Raymond J.
Fantappié, Marcelo Rosado
author_facet Carneiro, Vitor Coutinho
de Abreu da Silva, Isabel Caetano
Torres, Eduardo José Lopes
Caby, Stephany
Lancelot, Julien
Vanderstraete, Mathieu
Furdas, Silviya D.
Jung, Manfred
Pierce, Raymond J.
Fantappié, Marcelo Rosado
author_sort Carneiro, Vitor Coutinho
collection PubMed
description Treatment and control of schistosomiasis relies on the only available drug, praziquantel, and the search for alternative chemotherapeutic agents is therefore urgent. Egg production is required for the transmission and immunopathology of schistosomiasis and females of S. mansoni lay 300 eggs daily. A large fraction of the total mRNA in the mature female worm encodes one eggshell protein, Smp14. We report that the nuclear receptors SmRXR1 and SmNR1 regulate Smp14 transcription through the recruitment of two histone acetyltransferases (HATs), SmGCN5 and SmCBP1. The treatment of HEK293 cells with histone deacetylase (HDAC) inhibitors (NaB or TSA) produced an 8-fold activation of the SmRXR1/SmNR1-mediated Smp14 promoter activity. Incubation with synthetic HAT inhibitors, including PU139, significantly impaired the Smp14 promoter activity in these cells. Worm pairs cultivated in the presence of PU139 exhibited limited expression of Smp14 mRNA and protein. ChIP analysis demonstrated chromatin condensation at the Smp14 promoter site in worms treated with PU139. ChIP also revealed the presence of H3K27me3 and the absence of RNA Pol II at the Smp14 promoter region in the PU139-treated worms. Most significantly, the PU139-mediated inhibition of Smp14 expression resulted in a significant number of abnormal eggs as well as defective eggs within the ootype. In addition, scanning electron microscopy revealed structural defects and unformed eggshells, and vitelline cell leakage was apparent. The dsRNAi-targeting of SmGCN5 or SmCBP1 significantly decreased Smp14 transcription and protein synthesis, which compromised the reproductive system of mature female worms, egg-laying and egg morphology. Our data strongly suggest that the inhibition of Smp14 expression targeting SmGCN5 and/or SmCBP1 represents a novel and effective strategy to control S. mansoni egg development.
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spelling pubmed-40144522014-05-14 Epigenetic Changes Modulate Schistosome Egg Formation and Are a Novel Target for Reducing Transmission of Schistosomiasis Carneiro, Vitor Coutinho de Abreu da Silva, Isabel Caetano Torres, Eduardo José Lopes Caby, Stephany Lancelot, Julien Vanderstraete, Mathieu Furdas, Silviya D. Jung, Manfred Pierce, Raymond J. Fantappié, Marcelo Rosado PLoS Pathog Research Article Treatment and control of schistosomiasis relies on the only available drug, praziquantel, and the search for alternative chemotherapeutic agents is therefore urgent. Egg production is required for the transmission and immunopathology of schistosomiasis and females of S. mansoni lay 300 eggs daily. A large fraction of the total mRNA in the mature female worm encodes one eggshell protein, Smp14. We report that the nuclear receptors SmRXR1 and SmNR1 regulate Smp14 transcription through the recruitment of two histone acetyltransferases (HATs), SmGCN5 and SmCBP1. The treatment of HEK293 cells with histone deacetylase (HDAC) inhibitors (NaB or TSA) produced an 8-fold activation of the SmRXR1/SmNR1-mediated Smp14 promoter activity. Incubation with synthetic HAT inhibitors, including PU139, significantly impaired the Smp14 promoter activity in these cells. Worm pairs cultivated in the presence of PU139 exhibited limited expression of Smp14 mRNA and protein. ChIP analysis demonstrated chromatin condensation at the Smp14 promoter site in worms treated with PU139. ChIP also revealed the presence of H3K27me3 and the absence of RNA Pol II at the Smp14 promoter region in the PU139-treated worms. Most significantly, the PU139-mediated inhibition of Smp14 expression resulted in a significant number of abnormal eggs as well as defective eggs within the ootype. In addition, scanning electron microscopy revealed structural defects and unformed eggshells, and vitelline cell leakage was apparent. The dsRNAi-targeting of SmGCN5 or SmCBP1 significantly decreased Smp14 transcription and protein synthesis, which compromised the reproductive system of mature female worms, egg-laying and egg morphology. Our data strongly suggest that the inhibition of Smp14 expression targeting SmGCN5 and/or SmCBP1 represents a novel and effective strategy to control S. mansoni egg development. Public Library of Science 2014-05-08 /pmc/articles/PMC4014452/ /pubmed/24809504 http://dx.doi.org/10.1371/journal.ppat.1004116 Text en © 2014 Carneiro 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
Carneiro, Vitor Coutinho
de Abreu da Silva, Isabel Caetano
Torres, Eduardo José Lopes
Caby, Stephany
Lancelot, Julien
Vanderstraete, Mathieu
Furdas, Silviya D.
Jung, Manfred
Pierce, Raymond J.
Fantappié, Marcelo Rosado
Epigenetic Changes Modulate Schistosome Egg Formation and Are a Novel Target for Reducing Transmission of Schistosomiasis
title Epigenetic Changes Modulate Schistosome Egg Formation and Are a Novel Target for Reducing Transmission of Schistosomiasis
title_full Epigenetic Changes Modulate Schistosome Egg Formation and Are a Novel Target for Reducing Transmission of Schistosomiasis
title_fullStr Epigenetic Changes Modulate Schistosome Egg Formation and Are a Novel Target for Reducing Transmission of Schistosomiasis
title_full_unstemmed Epigenetic Changes Modulate Schistosome Egg Formation and Are a Novel Target for Reducing Transmission of Schistosomiasis
title_short Epigenetic Changes Modulate Schistosome Egg Formation and Are a Novel Target for Reducing Transmission of Schistosomiasis
title_sort epigenetic changes modulate schistosome egg formation and are a novel target for reducing transmission of schistosomiasis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4014452/
https://www.ncbi.nlm.nih.gov/pubmed/24809504
http://dx.doi.org/10.1371/journal.ppat.1004116
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