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Updated: Jan 12, 2026

Reverse Genetics to Engineer Positive-Sense RNA Virus Variants
Published on: June 9, 2022
Negative-sense RNA virus nucleocapsid as a versatile platform for gene delivery, vaccine development, and antiviral
Sheeba Rehman1, Pruthviraj M Chavan1, Akanksha Chaturvedi2
1Department of Biological Science, Indian Institute of Science Education and Research (IISER) Bhopal, Bhopal Bypass Road, Bhauri, Bhopal, Madhya Pradesh, 462066, India.
Abstract:
Viruses typically infiltrate host cells via specialized cellular receptors, a pivotal step that is challenging when suitable permissive cell lines or hosts are unavailable. Leveraging the unique internal replication machinery of negative-stranded (ns) RNA viruses, we demonstrate that purified nucleocapsid (NCs), their functional genomic templates, can directly initiate a complete viral life cycle upon intracellular delivery, bypassing conventional cell surface interaction. We successfully purified vesicular stomatitis virus (VSV) NCs, including those from a G-deleted pseudotyped variant (rVSV-ΔG-TFP). Exogenous delivery of these NCs into cells stimulated gene expression and generated infectious progeny virions (from full-length NCs). Critically, VSV-ΔG-TFP NCs, though self-amplifying, are inherently non-infectious, offering a safer, potentially more effective alternative for a vaccine development platform compared to live/attenuated viruses or mRNA-based systems. Furthermore, these NCs provide a secure method for transporting components of highly pathogenic nsRNA viruses (e.g., Nipah virus), acting as an inherent self-deactivating feature against accidental exposure. This study establishes NCs as a novel, intrinsically safer, and self-amplifying platform for antiviral screening, vaccine development, gene delivery, and biosafety in pathogen research.
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