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January 14, 2026npj Precision Oncology1 citationsOpen Access

KRAS mutated lung adenocarcinoma responds to pan-ERBB and Aurora kinase inhibitors

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IUIris Z. UrasMTMarija V. TrkuljaASAbdelrahman K.A.A. Salama

Key Points

  • This research aims to evaluate the effectiveness of Aurora kinase and pan-ERBB inhibitors on KRAS mutated lung adenocarcinoma.
  • High-throughput drug screening to identify effective inhibitors
  • Assessment of cell viability and clonogenicity
  • Analysis of apoptosis and cell cycle arrest
  • Conducted phospho-proteomic and transcriptomic analyses
  • Dual inhibition reduces tumor growth in KRAS mutant LUAD models
  • Induces apoptosis and causes G2→M cell cycle arrest
  • Overcomes resistance related to afatinib and sotorasib
  • Disrupts compensatory survival pathways

Abstract

Abstract KRAS mutations are prevalent in lung adenocarcinoma (LUAD). Although KRAS-targeted therapies such as KRAS-G12C inhibitor sotorasib are now clinically available, their durability is limited by rapid resistance development, underscoring the need for novel strategies. Through high-throughput drug screening, we identified Aurora kinase (AURK) inhibitors as potent enhancers of afatinib efficacy in KRAS mutant LUAD models. ERBB/AURK co-inhibition synergized to suppress cell viability, clonogenicity, and tumor growth, mediated by induction of apoptosis, G 2 → M cell cycle arrest, and disruption of compensatory signaling pathways. Mechanistically, dual inhibition activated pro-apoptotic programs, while impairing mitotic and survival pathways, as confirmed by phospho-proteomic and transcriptomic analyses. Notably, co-targeting ERBB and AURK effectively overcame resistance in afatinib- and sotorasib-refractory models, wherein bypass activation of EGFR, ERK, and AURK was observed. Given the limited survival benefit associated with KRAS-targeted therapies and rapid emergence of resistance in clinical settings, our findings establish ERBB/AURK co-inhibition as a promising therapeutic strategy to improve durability of response and combat acquired resistance in KRAS driven LUAD.

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Cite This Study

Uras et al. (2026) studied this question.

synapsesocial.com/papers/6966e73513bf7a6f02bffccdhttps://doi.org/10.1038/s41698-025-01242-8
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Synergy of EGFR and AURKA inhibitors in KRAS-mutated non-small cell lung cancers2024 · 7 citations
  2. 2Data from Synergy of EGFR and AURKA Inhibitors in <i>KRAS</i>-mutated Non–small Cell Lung Cancers2024
  3. 3Abstract 1330: Targeting Aurora kinase A for potentiating colorectal cancer to KRAS targeted therapy.2026
  4. 4Abstract A003: Enhancing the efficacy of KRAS-targeted therapy in colorectal cancer via Aurora kinase A inhibition2026
  5. 5Inhibition of ULK1/2 and KRASG12C controls tumor growth in preclinical models of lung cancer2024 · 13 citations