Mechanism of Inhibition of the Reproduction of SARS-CoV-2 andEbolaViruses by Remdesivir

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Abstract

Remdesivir is an antiviral drug initially designed against theEbolavirus. The results obtained with it both in biochemical studiesin vitroand in cell line assaysin vivowere very promising, but it proved to be ineffective in clinical trials. Remdesivir exhibited far better efficacy when repurposed against SARS-CoV-2. The chemistry that accounts for this difference is the subject of this study. Here, we examine the hypothesis that remdesivir monophosphate (RMP)-containing RNA functions as a template at the polymerase site for the second run of RNA synthesis, and as mRNA at the decoding center for protein synthesis. Our hypothesis is supported by the observation that RMP can be incorporated into RNA by the RNA-dependent RNA polymerases (RdRps) of both viruses, although some of the incorporated RMPs are subsequently removed by exoribonucleases. Furthermore, our hypothesis is consistent with the fact that RdRp of SARS-CoV-2 selects RMP for incorporation over AMP by 3-foldin vitro, and that RMP-added RNA can be rapidly extended, even though primer extension is often paused when the added RMP is translocated at thei+ 3 position (withithe nascent base pair at an initial insertion site of RMP) or when the concentrations of the subsequent nucleoside triphosphates (NTPs) are below their physiological concentrations. These observations have led to the hypothesis that remdesivir might be a delayed chain terminator. However, that hypothesis is challenged under physiological concentrations of NTPs by the observation that approximately three-quarters of RNA products efficiently overrun the pause.

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Wang, J., Reiss, K., Shi, Y., Lolis, E., Lisi, G. P., & Batista, V. S. (2021, June 22). Mechanism of Inhibition of the Reproduction of SARS-CoV-2 andEbolaViruses by Remdesivir. Biochemistry. American Chemical Society. https://doi.org/10.1021/acs.biochem.1c00292

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