Characterization of the NiRAN domain from RNA-dependent RNA polymerase provides insights into a potential therapeutic target against SARS-CoV-2

Author:

Dwivedy AbhisekORCID,Mariadasse RichardORCID,Ahmad Mohammed,Chakraborty Sayan,Kar DeepsikhaORCID,Tiwari Satish,Bhattacharyya SankarORCID,Sonar Sudipta,Mani ShailendraORCID,Tailor Prafullakumar,Majumdar TanmayORCID,Jeyakanthan JeyaramanORCID,Biswal Bichitra KumarORCID

Abstract

Apart from the canonical fingers, palm and thumb domains, the RNA dependent RNA polymerases (RdRp) from the viral order Nidovirales possess two additional domains. Of these, the function of the Nidovirus RdRp associated nucleotidyl transferase domain (NiRAN) remains unanswered. The elucidation of the 3D structure of RdRp from the severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2), provided the first ever insights into the domain organisation and possible functional characteristics of the NiRAN domain. Using in silico tools, we predict that the NiRAN domain assumes a kinase or phosphotransferase like fold and binds nucleoside triphosphates at its proposed active site. Additionally, using molecular docking we have predicted the binding of three widely used kinase inhibitors and five well characterized anti-microbial compounds at the NiRAN domain active site along with their drug-likeliness. For the first time ever, using basic biochemical tools, this study shows the presence of a kinase like activity exhibited by the SARS-CoV-2 RdRp. Interestingly, a well-known kinase inhibitor- Sorafenib showed a significant inhibition and dampened viral load in SARS-CoV-2 infected cells. In line with the current global COVID-19 pandemic urgency and the emergence of newer strains with significantly higher infectivity, this study provides a new anti-SARS-CoV-2 drug target and potential lead compounds for drug repurposing against SARS-CoV-2.

Funder

department of biotechnology

tamil nadu state council for higher education

Publisher

Public Library of Science (PLoS)

Subject

Computational Theory and Mathematics,Cellular and Molecular Neuroscience,Genetics,Molecular Biology,Ecology,Modelling and Simulation,Ecology, Evolution, Behavior and Systematics

Reference96 articles.

1. RNA dependent RNA polymerases: Insights from structure, function and evolution;S Venkataraman;Viruses,2018

2. Nidovirus RNA polymerases: Complex enzymes handling exceptional RNA genomes;CC Posthuma;Virus Research,2017

3. Discovery of an essential nucleotidylating activity associated with a newly delineated conserved domain in the RNA polymerase-containing protein of all nidoviruses;KC Lehmann;Nucleic Acids Res,2015

4. The Nonstructural Proteins Directing Coronavirus RNA Synthesis and Processing;EJ Snijder;Advances in Virus Research,2016

5. Structure of the SARS-CoV nsp12 polymerase bound to nsp7 and nsp8 co-factors;RN Kirchdoerfer;Nat Commun,2019

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