Co-expression analysis suggests lncRNA-mRNA interactions enhance antiviral immune response during acute Chikungunya fever in whole blood of pediatric patients

Author:

Felix Juliana de SouzaORCID,Almeida Mariana CordeiroORCID,Lopes Maria Fernanda da SilvaORCID,de Athayde Flávia Regina FlorencioORCID,Troiano Jéssica Antonini,Scaramele Natália FranciscoORCID,Furlan Amanda de OliveiraORCID,Lopes Flavia LombardiORCID

Abstract

Chikungunya virus is an arbovirus that causes the neglected tropical disease chikungunya fever, common in tropical areas worldwide. There is evidence that arboviruses alter host transcriptome and modulate immune response; this modulation may involve transcriptional and post-transcriptional control mechanisms mediated by long non-coding RNAs (lncRNAs). Herein, we employed bioinformatic analysis to evaluate co-expression of lncRNAs and their putative target mRNAs in whole blood during natural Chikungunya infection in adolescent boys. Sequencing data from GSE99992 was uploaded to the Galaxy web server, where data was aligned with HISAT2, gene counts were estimated with HTSeq-count, and differential expression was run with DESeq2. After gene classification with Biomart, Pearson’s correlation was applied to identify potential interactions between lncRNAs and mRNAs, which were later classified into cis and trans according to genomic location (FEELnc) and binding potential (LncTar), respectively. We identified 1,975 mRNAs and 793 lncRNAs that were differentially expressed between the acute and convalescent stages of infection in the blood. Of the co-expressed lncRNAs and mRNAs, 357 potentially interact in trans and 9 in cis; their target mRNAs enriched pathways related to immune response and viral infections. Out of 52 enriched KEGG pathways, the RIG-I like receptor signaling is enriched by the highest number of target mRNAs. This pathway starts with the recognition of viral pathogens, leading to innate immune response mediated by the production of IFN-I and inflammatory cytokines. Our findings indicate that alterations in lncRNA expression in adolescent boys, induced by acute Chikungunya infection, potentially modulate mRNAs that contribute to antiviral immune responses.

Funder

Fundação de Amparo à Pesquisa do Estado de São Paulo

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference39 articles.

1. Chikungunya Virus-Associated Disease;C Hua;Curr Rheumatol Rep,2017

2. European Centre for Disease Prevention and Control. Chikungunya worldwide overview. 2022 [cited 4 Jul 2022]. Available: https://www.ecdc.europa.eu/en/chikungunya-monthly

3. Chikungunya virus pathogenesis: From bedside to bench;T Couderc;Antiviral Res,2015

4. Chikungunya-attributable deaths: A neglected outcome of a neglected disease;AS Lima Neto;PLoS Negl Trop Dis,2019

5. Comprehensive Immunoprofiling of Pediatric Zika Reveals Key Role for Monocytes in the Acute Phase and No Effect of Prior Dengue Virus Infection;D Michlmayr;Cell Rep,2020

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