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April 22, 2026Cancer Research0 citations

Prolonged KRAS-MAPK Inhibition Induces Interferon Signaling that Promotes Cell State Transition and Confers Therapeutic Vulnerabilities

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ABAshenafi BulleYCYali ChenHLHuaping Li

Key Points

  • This research investigates how prolonged KRAS-MAPK inhibition leads to resistance in pancreatic cancer by inducing certain signaling pathways.
  • Analyzed the effect of KRAS-MAPK inhibition on signaling pathways in pancreatic ductal adenocarcinoma cells.
  • Conducted network analysis to identify regulators involved in signaling changes.
  • Tested therapeutic combinations in xenograft models to evaluate treatment efficacy.
  • Sustained KRAS-MAPK inhibition activated interferon and NF-κB signaling, driving a cell state transition resembling EMT.
  • TRIM22 was identified as a key factor promoting signaling changes linked to drug resistance.
  • Combining TROP2-targeted therapy with KRAS or ERK inhibitors notably reduced tumor growth.

Abstract

Abstract Acquired resistance limits the therapeutic efficacy of KRAS-MAPK inhibitors in pancreatic ductal adenocarcinoma (PDAC). As transcriptional plasticity and epithelial-to-mesenchymal transition (EMT) have been implicated in resistance, we sought to study the molecular mechanisms driving these changes to uncover actionable vulnerabilities. Sustained KRAS-MAPK inhibition induced interferon and NF-κB signaling and promoted cell state change mimicking an EMT state associated with drug resistance. Network analysis identified the interferon-inducible E3 ubiquitin ligase TRIM22 as a central regulator of this response. Mechanistically, TRIM22 promoted proteasomal degradation of IκBα, resulting in sustained NF-κB and EMT program activation that coincided with a basal-like transcriptional cell state. TRIM22 expression was driven by IRF1 and IRF9 following relief of ERK-mediated transcriptional repression during pathway inhibition. EMT induction was accompanied by marked upregulation of TROP2 (TACSTD2), an NF-κB target gene enriched in basal-like PDAC cell states. Combining TROP2-directed antibody–drug conjugate sacituzumab govitecan with KRAS or ERK inhibitors significantly suppressed PDAC tumor growth in xenograft models. Overall, prolonged KRAS-MAPK inhibition activates an interferon–TRIM22–NF-κB axis that drives EMT and therapeutic resistance in PDAC, while revealing TROP2 as a clinically actionable vulnerability to overcome acquired resistance.

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Cite This Study

Bulle et al. (2026) studied this question.

synapsesocial.com/papers/69e866416e0dea528ddea9b5https://doi.org/10.1158/0008-5472.can-25-4114
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