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Early Regulation of Profibrotic Genes in Primary Human Cardiac Myocytes by Trypanosoma cruzi

The molecular mechanisms of Trypanosoma cruzi induced cardiac fibrosis remains to be elucidated. Primary human cardiomyoctes (PHCM) exposed to invasive T. cruzi trypomastigotes were used for transcriptome profiling and downstream bioinformatic analysis to determine fibrotic-associated genes regulate...

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Autores principales: Udoko, Aniekanabassi N., Johnson, Candice A., Dykan, Andrey, Rachakonda, Girish, Villalta, Fernando, Mandape, Sammed N., Lima, Maria F., Pratap, Siddharth, Nde, Pius N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4714843/
https://www.ncbi.nlm.nih.gov/pubmed/26771187
http://dx.doi.org/10.1371/journal.pntd.0003747
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author Udoko, Aniekanabassi N.
Johnson, Candice A.
Dykan, Andrey
Rachakonda, Girish
Villalta, Fernando
Mandape, Sammed N.
Lima, Maria F.
Pratap, Siddharth
Nde, Pius N.
author_facet Udoko, Aniekanabassi N.
Johnson, Candice A.
Dykan, Andrey
Rachakonda, Girish
Villalta, Fernando
Mandape, Sammed N.
Lima, Maria F.
Pratap, Siddharth
Nde, Pius N.
author_sort Udoko, Aniekanabassi N.
collection PubMed
description The molecular mechanisms of Trypanosoma cruzi induced cardiac fibrosis remains to be elucidated. Primary human cardiomyoctes (PHCM) exposed to invasive T. cruzi trypomastigotes were used for transcriptome profiling and downstream bioinformatic analysis to determine fibrotic-associated genes regulated early during infection process (0 to 120 minutes). The identification of early molecular host responses to T. cruzi infection can be exploited to delineate important molecular signatures that can be used for the classification of Chagasic patients at risk of developing heart disease. Our results show distinct gene network architecture with multiple gene networks modulated by the parasite with an incline towards progression to a fibrogenic phenotype. Early during infection, T. cruzi significantly upregulated transcription factors including activator protein 1 (AP1) transcription factor network components (including FOSB, FOS and JUNB), early growth response proteins 1 and 3 (EGR1, EGR3), and cytokines/chemokines (IL5, IL6, IL13, CCL11), which have all been implicated in the onset of fibrosis. The changes in our selected genes of interest did not all start at the same time point. The transcriptome microarray data, validated by quantitative Real-Time PCR, was also confirmed by immunoblotting and customized Enzyme Linked Immunosorbent Assays (ELISA) array showing significant increases in the protein expression levels of fibrogenic EGR1, SNAI1 and IL 6. Furthermore, phosphorylated SMAD2/3 which induces a fibrogenic phenotype is also upregulated accompanied by an increased nuclear translocation of JunB. Pathway analysis of the validated genes and phospho-proteins regulated by the parasite provides the very early fibrotic interactome operating when T. cruzi comes in contact with PHCM. The interactome architecture shows that the parasite induces both TGF-β dependent and independent fibrotic pathways, providing an early molecular foundation for Chagasic cardiomyopathy. Examining the very early molecular events of T. cruzi cellular infection may provide disease biomarkers which will aid clinicians in patient assessment and identification of patient subpopulation at risk of developing Chagasic cardiomyopathy.
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spelling pubmed-47148432016-01-30 Early Regulation of Profibrotic Genes in Primary Human Cardiac Myocytes by Trypanosoma cruzi Udoko, Aniekanabassi N. Johnson, Candice A. Dykan, Andrey Rachakonda, Girish Villalta, Fernando Mandape, Sammed N. Lima, Maria F. Pratap, Siddharth Nde, Pius N. PLoS Negl Trop Dis Research Article The molecular mechanisms of Trypanosoma cruzi induced cardiac fibrosis remains to be elucidated. Primary human cardiomyoctes (PHCM) exposed to invasive T. cruzi trypomastigotes were used for transcriptome profiling and downstream bioinformatic analysis to determine fibrotic-associated genes regulated early during infection process (0 to 120 minutes). The identification of early molecular host responses to T. cruzi infection can be exploited to delineate important molecular signatures that can be used for the classification of Chagasic patients at risk of developing heart disease. Our results show distinct gene network architecture with multiple gene networks modulated by the parasite with an incline towards progression to a fibrogenic phenotype. Early during infection, T. cruzi significantly upregulated transcription factors including activator protein 1 (AP1) transcription factor network components (including FOSB, FOS and JUNB), early growth response proteins 1 and 3 (EGR1, EGR3), and cytokines/chemokines (IL5, IL6, IL13, CCL11), which have all been implicated in the onset of fibrosis. The changes in our selected genes of interest did not all start at the same time point. The transcriptome microarray data, validated by quantitative Real-Time PCR, was also confirmed by immunoblotting and customized Enzyme Linked Immunosorbent Assays (ELISA) array showing significant increases in the protein expression levels of fibrogenic EGR1, SNAI1 and IL 6. Furthermore, phosphorylated SMAD2/3 which induces a fibrogenic phenotype is also upregulated accompanied by an increased nuclear translocation of JunB. Pathway analysis of the validated genes and phospho-proteins regulated by the parasite provides the very early fibrotic interactome operating when T. cruzi comes in contact with PHCM. The interactome architecture shows that the parasite induces both TGF-β dependent and independent fibrotic pathways, providing an early molecular foundation for Chagasic cardiomyopathy. Examining the very early molecular events of T. cruzi cellular infection may provide disease biomarkers which will aid clinicians in patient assessment and identification of patient subpopulation at risk of developing Chagasic cardiomyopathy. Public Library of Science 2016-01-15 /pmc/articles/PMC4714843/ /pubmed/26771187 http://dx.doi.org/10.1371/journal.pntd.0003747 Text en © 2016 Udoko 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
Udoko, Aniekanabassi N.
Johnson, Candice A.
Dykan, Andrey
Rachakonda, Girish
Villalta, Fernando
Mandape, Sammed N.
Lima, Maria F.
Pratap, Siddharth
Nde, Pius N.
Early Regulation of Profibrotic Genes in Primary Human Cardiac Myocytes by Trypanosoma cruzi
title Early Regulation of Profibrotic Genes in Primary Human Cardiac Myocytes by Trypanosoma cruzi
title_full Early Regulation of Profibrotic Genes in Primary Human Cardiac Myocytes by Trypanosoma cruzi
title_fullStr Early Regulation of Profibrotic Genes in Primary Human Cardiac Myocytes by Trypanosoma cruzi
title_full_unstemmed Early Regulation of Profibrotic Genes in Primary Human Cardiac Myocytes by Trypanosoma cruzi
title_short Early Regulation of Profibrotic Genes in Primary Human Cardiac Myocytes by Trypanosoma cruzi
title_sort early regulation of profibrotic genes in primary human cardiac myocytes by trypanosoma cruzi
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4714843/
https://www.ncbi.nlm.nih.gov/pubmed/26771187
http://dx.doi.org/10.1371/journal.pntd.0003747
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