SARS-CoV-2 Nsp13 Helicase Resolves G-Quadruplexes and is Inhibited by G4 Ligands or an Anti-Viral Regulator: Implications for G4 Anti-Coronavirus Therapies.

Publication date: Jun 01, 2026

The COVID-19 pandemic is often viewed as a once-in-a-century event. However, the rise of new variants and the potential for infections from related coronaviruses continues to be a significant concern. Vaccines were a successful deterrent to COVID-19, but anti-coronavirus drugs to treat individuals with COVID-19 or Long COVID are not robust. Efforts to identify novel coronavirus and host targets for drug therapies are highly valued. We determined that the SARS-CoV-2 Nsp13 helicase resolves G-quadruplexes (G4) of various topologies in an ATP-stimulated manner. Additionally, the requirement for a 5′-single-stranded tail flanking DNA-G4 indicates its 5′-to-3′ translocation directionality. G4 ligands were tested for inhibition of Nsp13 G4 resolvase. PhenDC3 inhibited Nsp13 resolution of four-stranded parallel G4 (IC = 0. 06 nM), 150-fold more potent than two-stranded anti-parallel G4 (IC = 9 nM) and 680-fold more potent than the prominent human G4 resolvase FANCJ on the four-stranded parallel substrate (IC = 41 nM). Nsp13 is also capable of resolving uni-molecular RNA-G4 substrates, including a SARS-CoV-2-derived RNA-G4-forming sequence, strongly stimulated by its intrinsic ATPase activity. Nsp13-catalyzed resolution of a RNA-G4 substrate is inhibited by the G4 ligand PhenDC3 in a dose-dependent manner. Consistent with the biochemical studies that Nsp13 resolves RNA G-quadruplexes, Nsp13-transfected human cells treated with several G4 ligands displayed reduced RNA-G4 accumulation. The anti-viral regulator Cellular Nucleic Acid Binding Protein (CNBP) interacts with Nsp13 and inhibits Nsp13 G4 resolvase in vitro, suggesting a host mechanism to modulate Nsp13-dependent SARS-CoV-2 replication, which may have implications for G4-based coronavirus therapies.

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Concepts Keywords
CNBP
coronavirus
COVID-19
G-quadruplex
G4
helicase
SARS-CoV-2
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Semantics

Type Source Name
disease MESH COVID-19 pandemic
disease MESH infections
disease MESH Long COVID
drug DRUGBANK ATP
disease MESH FANCJ
drug DRUGBANK Coenzyme M
disease MESH pneumonia
disease MESH Severe Acute Respiratory Syndrome
disease MESH emergency
disease MESH cap
drug DRUGBANK Sodium lauryl sulfate
disease MESH SLs
drug DRUGBANK Guanine
pathway REACTOME Translation
disease MESH genomic stability
pathway REACTOME Metabolism
drug DRUGBANK Serine
disease MESH PDS
drug DRUGBANK Tilmicosin
disease MESH dissociation
drug DRUGBANK Bleomycin
disease MESH BLM
disease MESH adenocarcinoma
disease MESH osteosarcoma
drug DRUGBANK Dimethyl sulfoxide
drug DRUGBANK Hydrogen peroxide
drug DRUGBANK Angiotensin II
disease MESH death
pathway REACTOME Innate Immune System
pathway KEGG Viral replication
drug DRUGBANK Potassium Chloride
disease MESH image
drug DRUGBANK Flunarizine
drug DRUGBANK Albendazole
drug DRUGBANK Water
drug DRUGBANK Human Serum Albumin
drug DRUGBANK Edetic Acid
disease MESH SDS
drug DRUGBANK Glycerin
drug DRUGBANK Tromethamine
drug DRUGBANK Sodium carbonate
disease MESH PBS
drug DRUGBANK Phosphate ion
drug DRUGBANK Minaprine
disease MESH FBS
drug DRUGBANK Streptomycin

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