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Updated: Mar 20, 2026

MicroRNA-based Regulation of Picornavirus Tropism
Published on: February 6, 2017
Differential expression of miRNAs in Vero cells after Mayaro virus infection
Juliana Santana de Curcio1, Lívia do Carmo Silva1, Evandro Novaes2
1Universidade de Goiás, Departamento de Genética, Goiânia, GO, Brasil.
Background:
The Mayaro virus (MAYV) is an alphavirus endemic to Central and South America, primarily transmitted by mosquitoes of the Haemagogus genus. Human infection causes "Mayaro fever," characterized by symptoms similar to dengue and chikungunya, including debilitating arthralgia. Despite its potential for urbanisation, many aspects of MAYV-host interactions, particularly the role of host microRNAs (miRNAs), remain poorly understood.
Objectives:
This study aimed to investigate the expression profile of miRNAs in Vero cells infected with MAYV and to predict their potential biological targets and associated pathways.
Methods:
Infection was performed using the MAYV strain (BeAr 20290), and small RNA libraries were prepared from infected and control cells. Initial experiments were conducted to evaluate viral replication, cell viability, and small RNA expression. Based on these parameters, the 24-h post-infection time point was selected for small RNA sequencing. Bioinformatic tools were used to identify differentially expressed miRNAs and predict their targets in Homo sapiens and the MAYV genome.
Findings:
Among the 348 miRNAs identified, 46 were differentially expressed at 24 h (42 upregulated and four downregulated). Principal component analysis (PCA) indicated a clear separation between infected and control groups. In silico predictions of the targets of these miRNAs suggest potential associations with biological processes that may be relevant to virus-host interactions, such as immune response, programmed cell death pathways, viral replication, and persistence. Additionally, one miRNA detected in Vero cells was predicted to target a viral non-structural protein.
Main Conclusions:
Our findings indicate a potential dual role for host miRNAs during MAYV infection, involving both the modulation of host responses by the virus to enhance replication and a possible antiviral effect. While these interactions underscore the prospective relevance of miRNAs as biomarkers and therapeutic targets in arboviral infections, it is important to note that these conclusions are based solely on computational analyses. Therefore, they should be interpreted with caution until they are supported by further experimental validation.
Insights
This study explored host microRNAs (miRNAs) in Mayaro virus (MAYV) infected cells, revealing differential expression and potential roles in viral replication and host defense. Further validation is needed to confirm these findings for potential therapeutic applications.
Area of Science:
- Virology
- Molecular Biology
- Genomics
Background:
- Mayaro virus (MAYV) causes febrile illness with arthralgia, similar to dengue and chikungunya.
- MAYV is an alphavirus endemic to Central and South America, transmitted by Haemagogus mosquitoes.
- Understanding MAYV-host interactions, especially the role of microRNAs (miRNAs), is crucial for disease management.
Purpose of the Study:
- Investigate miRNA expression profiles in Vero cells infected with MAYV.
- Predict potential biological targets and pathways of differentially expressed miRNAs.
- Explore the role of host miRNAs in MAYV infection dynamics.
Main Methods:
- Vero cells were infected with the MAYV strain (BeAr 20290).
- Small RNA libraries were sequenced at 24 hours post-infection.
- Bioinformatic analyses identified differentially expressed miRNAs and predicted their targets in host and viral genomes.
Main Results:
- 46 out of 348 identified miRNAs were differentially expressed (42 upregulated, 4 downregulated).
- Predicted miRNA targets are involved in immune response, cell death, and viral replication.
- One miRNA was predicted to target a MAYV non-structural protein.
Conclusions:
- Host miRNAs may play a dual role in MAYV infection, aiding viral replication and potentially exerting antiviral effects.
- These findings suggest miRNAs could be biomarkers or therapeutic targets for arboviral infections.
- Computational predictions require experimental validation to confirm miRNA functions in MAYV infection.
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