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March 27, 2026Proceedings of the National Academy of Sciences0 citations

Tyrosine phosphoproteome profiling identifies cell-intrinsic signals limiting the efficacy of tyrosine kinase inhibitor therapies

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CFCameron T. FlowerFWForest M. White

Key Points

  • The aim is to uncover intrinsic signaling patterns that predict poor responses to tyrosine kinase inhibitor (TKI) therapies in cancer.
  • Utilized high-sensitivity multiplexed mass spectrometry to quantify phosphotyrosine sites.
  • Compared TK-driven human cancer cell lines based on their sensitivity to genotype-matched TKIs.
  • Conducted time- and dose-resolved drug combination experiments to assess drug interactions.
  • TKI treatment was equally effective at blocking signaling in both TKI-tolerant and TKI-sensitive lines.
  • TKI-tolerant lines exhibited a reduced proteome-wide phosphotyrosine response compared to sensitive lines.
  • All tolerant lines relied on unique compensatory kinases while showing hyperactivity of SRC family or ABL kinases, even without genetic mutations.
  • SFK/ABL inhibitors demonstrated potent synergistic effects with all tested TKIs.

Abstract

Tyrosine kinases (TKs) are frequently mutated or overexpressed in cancer, and TK inhibitors (TKIs) are an important therapeutic modality against TK-driven cancers, but many patients show an underwhelming response to TKIs prescribed on the basis of tumor genotype. To find cell-intrinsic TK signaling patterns which might be predictive of poor response to TKI therapies, we used high-sensitivity multiplexed mass spectrometry to quantify endogenous levels of 1,222 phosphotyrosine (pY) sites across the proteomes of TK-driven human cancer cell lines with variable response to genotype-matched TKIs. In direct comparisons between TKI-tolerant and TKI-sensitive lines with a common driver TK, we found that TKI treatment was equally effective at blocking driver TK signaling, and higher basal activity of the driver TK did not always predict higher sensitivity to TKI. All tolerant lines showed a dampened proteome-wide pY response to TKI exposure compared to sensitive lines, suggesting that tumor cells with more robust TK signaling are less vulnerable to driver TK blockade. We found that each tolerant line depends on a unique set of compensatory TKs and signaling axes but are unified by hyperactivity of at least one of the SRC family kinases (SFKs) or the related ABL1/2 kinases, both at rest and under TKI treatment, despite the absence of SFK or ABL genetic mutations. In time- and dose-resolved drug combination experiments, SFK/ABL inhibitors were potently synergistic with all TKIs tested, demonstrating that elevated SFK/ABL signaling is a conserved bottleneck for maximal TKI efficacy which could be exploited therapeutically.

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Cite This Study

Flower et al. (2026) studied this question.

synapsesocial.com/papers/69c61ff615a0a509bde186c4https://doi.org/10.1073/pnas.2522090123
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