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May 18, 2026Nature Communications2 citationsOpen Access

Protein-based pan-RAS inhibitor induces tumor regression in female mice via IFNγ and CD8+ T cell-dependent tumor necrosis

TNTeiko Komori NomuraKHKazuki HeishimaHMHidefumi Mukai

Key Points

  • This research aims to develop and evaluate a protein-based pan-RAS inhibitor for tumor treatment.
  • Utilized two engineered variants of pan-RAS inhibitor for in vivo studies in female mice.
  • Evaluated anti-tumor potency and toxicity in xenograft and syngeneic models.
  • Assessed the role of tumor microenvironment and immune cell infiltration.
  • RRSP-RBD-DTB showed femtomolar anti-tumor potency, inducing significant tumor regression.
  • RRSP-RBD-TAT required infiltration of IFNγ + CD8 + T cells for effective tumor regression.
  • Both variants exhibited minimal toxicity in normal tissues.

Abstract

Abstract Mutations in K/H/N-RAS occur in approximately 30% of human cancers, yet most RAS mutants remain undruggable in clinical settings. Here, we describe a protein-based pan-RAS inhibitor, RRSP-RBD, that combines a RAS/Rap1A-specific endopeptidase (RRSP) with a RAS-binding domain (RBD). This engineered fusion protein localizes to RAS on the plasma membrane, where it cleaves RAS, disrupts RAS-effector interactions, and effectively inhibits downstream RAS signaling. To achieve intracellular delivery of RRSP-RBD in vivo, we engineer two cell-permeable variants. The diphtheria toxin-based version (RRSP-RBD-DTB) demonstrates femtomolar anti-tumor potency and induces tumor regression in a xenograft mouse model. The cell-permeable peptide-based version (RRSP-RBD-TAT) exhibits robust anti-tumor activity in syngeneic models without inducing irreversible toxicity in normal tissues. Interestingly, anti-tumor efficacy of RRSP-RBD-TAT critically depends on the tumor microenvironment, requiring infiltration by IFNγ + CD8 + T cells to mediate tumor regression. Pharmacokinetic and toxicity evaluations indicate that RRSP-RBD is tolerated under the conditions tested and support further investigation as a protein-based pan-RAS inhibitor (all mouse studies were performed in female mice).

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Cite This Study

Nomura et al. (2026) studied this question.

synapsesocial.com/papers/6a0aaccf5ba8ef6d83b702c0https://doi.org/10.1038/s41467-026-73300-z
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