A targeted quantitative proteomics strategy for global kinome profiling of cancer cells and tissues

Yongsheng Xiao1, Lei Guo, Yinsheng Wang

  • 1Department of Chemistry and.

Insights

A new method profiles over 300 human kinases using isotope-coded probes and targeted proteomics. This approach aids in developing personalized cancer therapies by predicting kinase inhibitor effectiveness based on expression levels.

Area of Science:

  • Biochemistry
  • Proteomics
  • Cancer Research

Background:

  • Kinases are key targets for anti-cancer drugs, but their heterogeneous expression complicates therapy.
  • Existing profiling methods lack the sensitivity and accuracy needed for global kinome analysis.

Purpose of the Study:

  • To develop a novel, sensitive, and accurate method for global kinome profiling.
  • To assess kinase expression in cancer cells and correlate it with drug response.

Main Methods:

  • Utilized an isotope-coded ATP-affinity probe combined with multiple-reaction monitoring (MRM) targeted proteomics.
  • Developed a transferable MRM kinome library incorporating iRT for cross-platform reproducibility.

Main Results:

  • Simultaneously assessed over 300 kinases, detecting approximately 250 in single cell lines with high sensitivity and accuracy.
  • Revealed significant kinome reprogramming during melanoma progression.
  • Demonstrated a strong correlation between kinase inhibitor efficacy and target kinase expression levels.

Conclusions:

  • The developed MRM-based kinome profiling assay is a facile and accurate tool for global kinome analysis.
  • This method provides valuable insights for predicting kinase inhibitor effectiveness and enabling individualized cancer chemotherapy.