Systematic identification of signaling pathways with potential to confer anticancer drug resistance

Colin A Martz1, Kathleen A Ottina2, Katherine R Singleton1

  • 1Department of Pharmacology and Cancer Biology, Duke University, 450 Research Drive, Durham, NC 27710, USA.

Science Signaling
|December 25, 2014
PubMed

Insights

Cancer cells activate signaling pathways like RAS-MAPK and Notch1 to resist targeted therapies. Inhibiting Notch1 can restore drug sensitivity in breast cancer and melanoma, offering new therapeutic strategies.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Therapeutics

Background:

  • Cancer cells develop drug resistance through diverse signaling pathways.
  • Targeted therapies are crucial but often face resistance mechanisms.
  • Identifying these resistance pathways is key to improving cancer treatment.

Purpose of the Study:

  • To systematically identify signaling pathways conferring resistance to targeted cancer therapies.
  • To investigate the role of Notch1 signaling in acquired drug resistance.
  • To explore therapeutic strategies targeting identified resistance pathways.

Main Methods:

  • Screening a library of barcoded pathway-activating mutant cDNAs.
  • Testing resistance to 13 clinically relevant targeted therapies in cancer cell lines and mouse xenografts.
  • Inhibiting Notch signaling with a γ-secretase inhibitor.
  • Correlating Notch1 activity markers with patient response data.

Main Results:

  • Activation of RAS-MAPK, Notch1, PI3K-mTOR, and ER pathways frequently conferred drug resistance.
  • Notch1 activation promoted resistance to tamoxifen in breast cancer and MAPK inhibitors in melanoma.
  • Inhibiting Notch1 restored sensitivity to tamoxifen in mice.
  • Notch1 activity markers correlated with tamoxifen resistance in patients and were elevated in melanoma tumors.

Conclusions:

  • Notch1 signaling is a potential therapeutic target for drug-resistant breast cancer and melanoma.
  • Simultaneous inhibition of multiple resistance pathways can synergistically enhance drug sensitivity.
  • Systematic identification of resistance pathways can inform clinical strategies and drug development.

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