Uridine–cytidine kinase 2 potentiates the mutagenic influence of the antiviral β-d-N4-hydroxycytidine

Author:

Xu Zhen12,Flensburg Christoffer12,Bilardi Rebecca A12,Majewski Ian J12ORCID

Affiliation:

1. The Walter and Eliza Hall Institute of Medical Research , 1G Royal Parade, VIC 3052 , Australia

2. University of Melbourne, Department of Medical Biology , 1G Royal Parade, VIC 3052 , Australia

Abstract

Abstract Molnupiravir (EIDD-2801) is an antiviral that received approval for the treatment of severe acute respiratory syndrome coronavirus 2 (SARS-CoV2) infection. Treatment of bacteria or cell lines with the active form of molnupiravir, β-d-N4-hydroxycytidine (NHC, or EIDD-1931), induces mutations in DNA. Yet these results contrast in vivo genotoxicity studies conducted during registration of the drug. Using a CRISPR screen, we found that inactivating the pyrimidine salvage pathway component uridine–cytidine kinase 2 (Uck2) renders cells more tolerant of NHC. Short-term exposure to NHC increased the mutation rate in a mouse myeloid cell line, with most mutations being T:A to C:G transitions. Inactivating Uck2 impaired the mutagenic activity of NHC, whereas over-expression of Uck2 enhanced mutagenesis. UCK2 is upregulated in many cancers and cell lines. Our results suggest differences in ribonucleoside metabolism contribute to the variable mutagenicity of NHC observed in cancer cell lines and primary tissues.

Funder

Victorian State Government Operational Infrastructure Support

Australian Government NHMRC IRIISS

Publisher

Oxford University Press (OUP)

Subject

Genetics

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