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February 26, 2026Current Issues in Molecular Biology0 citationsOpen Access

The Disruption of the HIV-1 Gag Start Codon via Editing Using MmCas12m-Dual Base Editor-Loaded Virus-like Particles

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TAT. I. AlievAIAlmaz ImatdinovEPE. Yu. Prudnikova

Key Points

  • The aim is to investigate the use of virus-like particles (VLPs) in delivering gene editing tools to disrupt the HIV-1 gag start codon.
  • Utilized virus-like particles for ribonucleoprotein delivery.
  • Employed electron microscopy to observe VLP morphogenesis.
  • Incorporated MmCas12m–TadDE into VLPs to target the HIV-1 gag gene.
  • Achieved an editing efficiency of about 9%.
  • Noted minimal off-target effects, indicating a safer editing strategy.

Abstract

Approaches to delivering gene editing tools in the form of ribonucleoproteins may provide a safety advantage over the delivery of nucleic acids encoding ribonucleoproteins. Virus-based vectors are widely used as a delivery platform. However, the persistence of viral exogenous nucleic acids can cause increased genotoxicity. Virus-like particles (VLPs) do not contain an expression cassette and can act as a platform for the delivery of ready-made ribonucleoprotein complexes. The absence of nucleic acids in VLPs eliminates the risk of insertional mutagenesis compared to widely used lentiviruses or adeno-associated viruses. Therefore, we used VLPs to deliver the ribonucleoprotein complex MmCas12m–TadDE to disrupt the HIV-1 gag gene start codon. We detected VLP morphogenesis using electron microscopy. We confirmed the incorporation of MmCas12m–TadDE into VLPs. We achieved an editing efficiency of about 9% in some cases with minimal off-target effects, which confirms the prospect of using VLPs as a platform for delivering genomic editing tools.

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Cite This Study

Aliev et al. (2026) studied this question.

synapsesocial.com/papers/699fe3f995ddcd3a253e82aahttps://doi.org/10.3390/cimb48030241
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