Related Experiment Video
Updated: Jun 15, 2025

Assembly and Purification of Prototype Foamy Virus Intasomes
Published on: March 19, 2018
Indels allow antiviral proteins to evolve functional novelty inaccessible by missense mutations
Jeannette L Tenthorey1, Serena Del Banco2, Ishrak Ramzan1
1Cellular and Molecular Pharmacology Department, University of California, San Francisco, San Francisco, CA 94158, USA.
Abstract:
Antiviral proteins often evolve rapidly at virus-binding interfaces to defend against new viruses. We investigated whether antiviral adaptation via missense mutations might face limits, which insertion or deletion mutations (indels) could overcome. Using high-throughput saturation missense mutagenesis, we identify one such case of a nearly insurmountable evolutionary challenge: the human anti-retroviral protein TRIM5α requires more than five missense mutations in its specificity-determining v1 loop to restrict a divergent simian immunodeficiency virus (SIV). However, through a novel saturating indel scanning methodology, we find that duplicating just one amino acid in v1 enables human TRIM5α to potently restrict SIV in a single evolutionary step. Moreover, natural primate TRIM5α v1 loops have evolved indels that confer novel antiviral specificities. Thus, indels enable antiviral proteins to overcome viral challenges otherwise inaccessible by missense mutations. Our findings reveal the potential of often-overlooked indel mutations in driving protein innovation.
Related Concept Videos
Viral Mutations
Retroviruses
siRNA - Small Interfering RNAs
In the cytoplasm, siRNA is processed from a double-stranded RNA, which comes from either endogenous DNA transcription or exogenous sources like a virus. This double-stranded RNA is then cleaved by the...
Viral Recombination
Leaky Scanning
piRNA - Piwi-interacting RNAs

