Experimental Dengue Virus Type 4 Infection Increases the Expression of MicroRNAs-15/16, Triggering a Caspase-Induced Apoptosis Pathway

Author:

Casseb Samir Mansour Moraes12ORCID,Melo Karla Fabiane Lopes de1,Carvalho Carlos Alberto Marques de3ORCID,Santos Carolina Ramos dos1,Franco Edna Cristina Santos1,Vasconcelos Pedro Fernando da Costa3ORCID

Affiliation:

1. Experimental Pathology Section, Evandro Chagas Institute, Ananindeua 67030-000, PA, Brazil

2. Oncology Research Center, Federal University of Pará, Belém 66075-110, PA, Brazil

3. Department of Pathology, University of Pará State, Belém 66050-540, PA, Brazil

Abstract

The World Health Organization has estimated the annual occurrence of approximately 392 million dengue virus (DENV) infections in more than 100 countries where the virus is endemic, which represents a serious threat to humanity. DENV is a serologic group with four distinct serotypes (DENV-1, DENV-2, DENV-3, and DENV-4) belonging to the genus Flavivirus, in the family Flaviviridae. Dengue is the most widespread mosquito-borne disease in the world. The ~10.7 kb DENV genome encodes three structural proteins (capsid (C), pre-membrane (prM), and envelope (E)) and seven non-structural (NS) proteins (NS1, NS2A, NS2B, NS3, NS4A, NS4B, and NS5). The NS1 protein is a membrane-associated dimer and a secreted, lipid-associated hexamer. Dimeric NS1 is found on membranes both in cellular compartments and cell surfaces. Secreted NS1 (sNS1) is often present in patient serum at very high levels, which correlates with severe dengue symptoms. This study was conducted to discover how the NS1 protein, microRNAs-15/16 (miRNAs-15/16), and apoptosis are related during DENV-4 infection in human liver cell lines. Huh 7.5 and HepG2 cells were infected with DENV-4, and miRNAs-15/16, viral load, NS1 protein, and caspases-3/7 were quantified after different durations of infection. This study demonstrated that miRNAs-15/16 were overexpressed during the infection of HepG2 and Huh 7.5 cells with DENV-4 and had a relationship with NS1 protein expression, viral load, and the activity of caspases-3/7, thus making these miRNAs potential injury markers during DENV infection in human hepatocytes.

Funder

CNPq

Publisher

MDPI AG

Subject

Microbiology (medical),Molecular Biology,General Medicine,Microbiology

Reference44 articles.

1. Horstick, O., Tozan, Y., and Wilder-Smith, A. (2015). Reviewing dengue: Still a neglected tropical disease?. PLoS Negl. Trop. Dis., 9.

2. Differential Wnt-mediated programming and arrhythmogenesis in right versus left ventricles;Li;J. Mol. Cell. Cardiol.,2018

3. Dengue and dengue hemorrhagic fever, Brazil, 1981-2002;Siqueira;Emerg. Infect. Dis.,2005

4. Clinical and Laboratory Profile of Zika and Dengue Infected Patients: Lessons Learned from the Co-circulation of Dengue, Zika and Chikungunya in Brazil;Azeredo;PLoS Curr. Influenza,2018

5. Dengue virus potentially promotes migratory responses on endothelial cells by enhancing pro-migratory soluble factors and miRNAs;Virus Res.,2019

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