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The SARS-CoV-2 protein Nsp2 has been implicated in a wide range of viral processes, but its exact functions, and the structural basis of those functions, remain unknown. Here, we report an atomic model for full-length Nsp2 obtained by combining cryo-electron microscopy with deep learning-based structure prediction from AlphaFold2. The resulting structure reveals a highly-conserved zinc ion-binding site, suggesting a role for Nsp2 in RNA binding. Mapping emerging mutations from variants of SARS-CoV-2 on the resulting structure shows potential host-Nsp2 interaction regions. Using structural analysis together with affinity tagged purification mass spectrometry experiments, we identify Nsp2 mutants that are unable to interact with the actin-nucleation-promoting WASH protein complex or with GIGYF2, an inhibitor of translation initiation and modulator of ribosome-associated quality control. Our work suggests a potential role of Nsp2 in linking viral transcription within the viral replication-transcription complexes (RTC) to the translation initiation of the viral message. Collectively, the structure reported here, combined with mutant interaction mapping, provides a foundation for functional studies of this evolutionary conserved coronavirus protein and may assist future drug design.
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http://dx.doi.org/10.21203/rs.3.rs-515215/v1 | DOI Listing |
Viruses
August 2025
Next Generation Sequencing Unit, School of Biomedical Sciences, Faculty of Health Sciences, Bloemfontein 9300, South Africa.
While a global downward trend in rotavirus diarrhea cases has been observed following vaccine introduction, reassortment, genetic drift, and vaccine-escaping strains remain a concern, particularly in Sub-Saharan Africa. Here, we provide genomic insights into three equine-like G3P[8] rotavirus strains detected in Benin during the post-vaccine era. Whole-genome sequencing was performed using the Illumina MiSeq platform, and genomic analysis was conducted using bioinformatics tools.
View Article and Find Full Text PDFJ Mol Graph Model
November 2025
Research Group on Biological and Molecular Chemistry, Institute of Chemistry and Biotechnology, Federal University of Alagoas, AC Simões campus, Lourival Melo Mota Avenue, 57072-970, Maceió, Alagoas, Brazil. Electronic address:
- Chikungunya virus (CHIKV) poses a significant global health threat due to its association with debilitating arthritis and the limited therapeutic options available. Non-structural protein 2 (nsP2) is a multifunctional enzyme and cysteine protease that plays a critical role in viral replication, making it an attractive target for antiviral strategies. This study investigates the water-mediated catalytic activation mechanism of nsP2, with a particular emphasis on its catalytic role.
View Article and Find Full Text PDFNucleic Acids Res
July 2025
Center for RNA Research, Institute for Basic Science, Seoul 08826, Republic of Korea.
The SARS-CoV-2 genome encodes 16 nonstructural proteins (Nsps), with Nsp2 being the least conserved and understood. This study highlights a crucial role for Nsp2 in the early phase of the viral life cycle, particularly its interaction with GIGYF2, which relocates near double-membrane vesicles (DMVs) and enhances viral protein production. Deletion of the Nsp2-coding region from the viral genome led to a drastic reduction in viral RNA synthesis early in infection (3-4 h after infection).
View Article and Find Full Text PDFACS Infect Dis
August 2025
Structural Genomics Consortium, UNC Eshelman School of Pharmacy, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599, United States.
Chikungunya virus (CHIKV) replication relies on the multifunctional nsP2 protein, making it an attractive target for antiviral drug discovery. Here, we report the resolution of oxaspiropiperidine , a first-in-class inhibitor of the CHIKV nsP2 RNA helicase (nsP2hel), into its constitutive enantiomers and characterization of their antiviral activity. The enantiomer ()- exhibited potent inhibition of viral replication, nsP2hel ATPase activity, and dsRNA unwinding, while the ()- enantiomer was >100-fold less active.
View Article and Find Full Text PDFJ Ethnopharmacol
July 2025
BRIC-Institute of Life Sciences (ILS), Bhubaneswar, Odisha, India. Electronic address:
Ethnopharmacological Relevance: Viral infections have become a public health concern globally. The limited efficacy of existing antivirals against emerging viruses encourages extensive research to find alternative strategies. In this scenario, various plant bioactive compounds have been reported to possess potential against a wide range of illnesses, including viral diseases.
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