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Effects of natural RNA modifications on the activity of SARS‐CoV‐2 RNA‐dependent RNA polymerase.

Authors :
Petushkov, Ivan
Esyunina, Daria
Kulbachinskiy, Andrey
Source :
FEBS Journal. Jan2023, Vol. 290 Issue 1, p80-92. 13p.
Publication Year :
2023

Abstract

RNA‐dependent RNA polymerase (RdRp) plays a key role in the replication of RNA viruses, including SARS‐CoV‐2. Processive RNA synthesis by RdRp is crucial for successful genome replication and expression, especially in the case of very long coronaviral genomes. Here, we analysed the activity of SARS‐CoV‐2 RdRp (the nsp12–nsp7–nsp8 complex) on synthetic primer–templates of various structures, including substrates with mismatched primers or template RNA modifications. It has been shown that RdRp cannot efficiently extend RNA primers containing mismatches and has no intrinsic RNA cleavage activity to remove the primer 3′‐end, thus necessitating the action of exoribonuclease for proofreading. Similar to DNA‐dependent RNA polymerases, RdRp can perform processive pyrophosphorolysis of the nascent RNA product but this reaction is also blocked in the presence of mismatches. Furthermore, we have demonstrated that several natural post‐transcriptional modifications in the RNA template, which do not prevent complementary interactions (N6‐methyladenosine, 5‐methylcytosine, inosine and pseudouridine), do not change RdRp processivity. At the same time, certain modifications of RNA bases and ribose residues strongly block RNA synthesis, either prior to nucleotide incorporation (3‐methyluridine and 1‐methylguanosine) or immediately after it (2'‐O‐methylation). The results demonstrate that the activity of SARS‐CoV‐2 RdRp can be strongly inhibited by common modifications of the RNA template suggesting a way to design novel antiviral compounds. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1742464X
Volume :
290
Issue :
1
Database :
Academic Search Index
Journal :
FEBS Journal
Publication Type :
Academic Journal
Accession number :
161131969
Full Text :
https://doi.org/10.1111/febs.16587