miRNAs may play a major role in the control of gene expression in key pathobiological processes in Chagas disease cardiomyopathy

Author:

Laugier Laurie,Ferreira Ludmila Rodrigues Pinto,Ferreira Frederico MoraesORCID,Cabantous Sandrine,Frade Amanda FarageORCID,Nunes Joao PauloORCID,Ribeiro Rafael Almeida,Brochet PaulineORCID,Teixeira Priscila CamilloORCID,Santos Ronaldo Honorato Barros,Bocchi Edimar A.,Bacal Fernando,Cândido Darlan da Silva,Maso Vanessa EscolanoORCID,Nakaya Helder I.ORCID,Kalil Jorge,Cunha-Neto EdecioORCID,Chevillard ChristopheORCID

Abstract

Chronic Chagas disease cardiomyopathy (CCC), an especially aggressive inflammatory dilated cardiomyopathy caused by lifelong infection with the protozoan Trypanosoma cruzi, is a major cause of cardiomyopathy in Latin America. Although chronic myocarditis may play a major pathogenetic role, little is known about the molecular mechanisms responsible for its severity. The aim of this study is to study the genes and microRNAs expression in tissues and their connections in regards to the pathobiological processes. To do so, we integrated for the first time global microRNA and mRNA expression profiling from myocardial tissue of CCC patients employing pathways and network analyses. We observed an enrichment in biological processes and pathways associated with the immune response and metabolism. IFNγ, TNF and NFkB were the top upstream regulators. The intersections between differentially expressed microRNAs and differentially expressed target mRNAs showed an enrichment in biological processes such as Inflammation, inflammation, Th1/IFN-γ-inducible genes, fibrosis, hypertrophy, and mitochondrial/oxidative stress/antioxidant response. MicroRNAs also played a role in the regulation of gene expression involved in the key cardiomyopathy-related processes fibrosis, hypertrophy, myocarditis and arrhythmia. Significantly, a discrete number of differentially expressed microRNAs targeted a high number of differentially expressed mRNAs (>20) in multiple processes. Our results suggest that miRNAs orchestrate expression of multiple genes in the major pathophysiological processes in CCC heart tissue. This may have a bearing on pathogenesis, biomarkers and therapy.

Funder

INSERM

Aix-Marseille Université

ARCUS II

CNPq

FAPESP

FAPESP/ANR

Sao Paulo State Research Funding Agency FAPESP

Council for Scientific and Technological Development - CNPq

French consulate in Brazil and the University of São Paulo

Publisher

Public Library of Science (PLoS)

Subject

Infectious Diseases,Public Health, Environmental and Occupational Health

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