MicroRNA 205-5p and COVID-19 adverse outcomes: Potential molecular biomarker and regulator of the immune response

Author:

Vaz Camila de Oliveira1ORCID,Hounkpe Bidossessi Wilfried2,Oliveira José Diogo1,Mazetto Bruna1,Cardoso Jacintho Bruna1,Aparecida Locachevic Gisele3,Henrique De Oliveira Soares Kaio3,Carlos Silva Mariolano João3,Castilho de Mesquita Giulia4,Colombera Peres Karina3,Vieira- Damiani Gislaine5,Vieira Geraldo Murilo6,Orsi Fernanda Andrade7ORCID

Affiliation:

1. School of Medical Sciences, State University of Campinas, Campinas 13083-887, Brazil

2. Bone Metabolism Laboratory, Rheumatology Division, School of Medical Sciences, University of Sao Paulo, Sao Paulo 01246903, Brazil

3. Clinical Hospital, Department of Clinical Pathology, State University of Campinas, Campinas 13083-888, Brazil

4. School of Medicine São Leopoldo Mandic, Campinas 13045-755, Brazil

5. Federal Institute of Education, Science and Technology of São Paulo, Capivari 13365-010, Brazil

6. Department of Structural and Functional Biology, Biology Institute, State University of Campinas, Campinas 13083-862, Brazil

7. Department of Pathology, School of Medical Sciences, State University of Campinas, Campinas 13083-887, Brazil

Abstract

Coronavirus disease 2019 (COVID-19) is an acute respiratory infection caused by the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). The uncontrolled systemic inflammatory response, resulting from the release of large amounts of pro-inflammatory cytokines, is the main mechanism behind severe acute respiratory syndrome and multiple organ failure, the two main causes of death in COVID-19. Epigenetic mechanisms, such as gene expression regulation by microRNAs (miRs), may be at the basis of the immunological changes associated with COVID-19. Therefore, the main objective of the study was to evaluate whether the expression of miRNAs upon hospital admission could predict the risk of fatal COVID-19. To evaluate the level of circulating miRNAs, we used serum samples of COVID-19 patients collected upon hospital admission. Screening of differentially expressed miRNAs in fatal COVID-19 was performed by miRNA-Seq and the validation of miRNAs by reverse transcription-quantitative polymerase chain reaction (RT-qPCR). The Mann–Whitney test and receiver operating characteristic (ROC) curve were used to validate the miRNAs, whose potential signaling pathways and biological processes were identified through an in silico approach. A cohort of 100 COVID-19 patients was included in this study. By comparing the circulating levels of miRs between survivors and patients who died due to complications of the infection, we found that the expression of miR-205-5p was increased in those who died during hospitalization, and the expression of both miR-205-5p (area under the curve [AUC] = 0.62, 95% confidence interval [CI] = 0.5–0.7, P = 0.03) and miR-206 (AUC = 0.62, 95% CI = 0.5–0.7, P = 0.03) was increased in those who lately evolved to severe forms of the disease (AUC = 0.70, 95% CI = 0.6–0.8, P = 0.002).“In silico” analysis revealed that miR-205-5p has the potential to enhance the activation of NLPR3 inflammasome and to inhibit vascular endothelial growth factor (VEGF) pathways. Impaired innate immune response against SARS-CoV-2 may be explained by epigenetic mechanisms, which could form early biomarkers of adverse outcomes.

Funder

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Fundo de Apoio ao Ensino, à Pesquisa e Extensão, Universidade Estadual de Campinas

Fundação de Amparo à Pesquisa do Estado de São Paulo

Publisher

Frontiers Media SA

Subject

General Biochemistry, Genetics and Molecular Biology

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