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In silico prediction and experimental validation of siRNAs targeting ORF1ab of MERS-CoV in Vero cell line

Authors :
Zeenat Mirza
Sayed Sartaj Sohrab
Sherif A. El-Kafrawy
Ahmed M. Hassan
Esam I. Azhar
Fatima Alsaqaf
Source :
Saudi Journal of Biological Sciences, Vol 28, Iss 2, Pp 1348-1355 (2021), Saudi Journal of Biological Sciences
Publication Year :
2021
Publisher :
Elsevier BV, 2021.

Abstract

The Middle East Respiratory Syndrome Coronavirus is well known to cause respiratory syndrome and this virus was identified and isolated for the first time from Jeddah, Saudi Arabia in 2012 from infected patient. In this report, we have conducted the in-silico prediction, designing and evaluation of siRNAs targeting Middle East Respiratory Syndrome Coronavirus orf1ab gene to inhibit the virus replication. By using bioinformatics software, total twenty-one functional, off-target reduced siRNA were selected from four hundred and sixty-two siRNAs based on their greater potency and specificity. We have evaluated only seven siRNAs to analyze their performance and efficacy as antivirals by reverse transfection approach in Vero cells. There was no cytotoxicity of siRNAs at various concentrations was observed in Vero cells. Based on the real-time PCR results, better inhibition of viral replication was observed in the siRNA-1 and 4 as compared to other siRNAs. The results generated from this work provided suitable information about the efficacy of siRNAs which encouraged us to further evaluate the remaining siRNAs to determine their inhibitory effect on the virus replication. We concluded that the insilico prediction and designing resulted in the screening of potential siRNAs with better efficiency, and strength. This can be used to develop oligonucleotide-based antiviral therapeutics against MERS-CoV in the near future.

Details

ISSN :
1319562X
Volume :
28
Database :
OpenAIRE
Journal :
Saudi Journal of Biological Sciences
Accession number :
edsair.doi.dedup.....ba4ea116d19f5e6c303f770538891413
Full Text :
https://doi.org/10.1016/j.sjbs.2020.11.066