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April 3, 2026Nature Communications3 citationsOpen Access

Miniature and versatile genome regulation TnpB-ωRNA toolkits facilitate cancer immunotherapy

JLJunlin LuJLJiajian LaiLCLei Cheng

Key Points

  • This research aims to develop a compact genome regulation system using TnpB for cancer immunotherapy.
  • Engineered the TnpB nuclease with ωRNA for enhanced functionality.
  • Developed a single-AAV delivery system called AAV-ImmunAct.
  • Activated immune-related genes (CXCL9, IL-15, IFN-γ) using enTnpBa in mammalian cells.
  • Achieved a 2889-fold increase in gene expression via enTnpBa.
  • AAV-ImmunAct improved T cell migration and activation.
  • Enhanced cancer cell killing in both cell lines and patient-derived organoids.
  • Demonstrated synergistic effects with anti-PD-1 therapy in humanized mice.

Abstract

CRISPR‒Cas systems represent powerful tools for genome regulation. However, the large size of Cas proteins limits their efficient delivery via an adeno-associated virus (AAV), thereby restricting their clinical translation. Here, we engineer the IS200/IS605 transposon-encoded nuclease TnpB, along with its ωRNA scaffold, to create an enhanced TnpB system, which serves as a compact toolkit for gene activation, genome editing, and base editing. The gene activator enTnpBa increases expression by 2889-fold with a minimized 93 nt ωRNA and robustly activates endogenous genes in mammalian cells. We develop a single-AAV-based regimen for immune activation (AAV-ImmunAct) that delivers enTnpBa to activate CXCL9, IL-15, and IFN-γ. AAV-ImmunAct effectively enhances T cell migration and activation, increases killing of cancer cell lines and patient-derived organoids, and synergizes with anti-PD-1 therapy in humanized mice. Here, we establish enTnpB as a compact and versatile platform for genome regulation and a promising tool for cancer immunotherapy.

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Cite This Study

Lu et al. (2026) studied this question.

synapsesocial.com/papers/69cf5e5f5a333a821460ca9dhttps://doi.org/10.1038/s41467-026-71327-w
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