Kinase inhibitor pulldown assay (KiP) for clinical proteomics

Alexander B Saltzman1, Doug W Chan2,3, Matthew V Holt2

  • 1Mass Spectrometry Proteomics Core, Advanced Technology Cores, Baylor College of Medicine, Houston, TX, USA.

Clinical Proteomics
|January 15, 2024
PubMed

Insights

This study introduces a novel mass spectrometry method, Kinase Inhibitor Pulldown coupled with Parallel Reaction Monitoring (KiP-PRM), for precise protein kinase quantification in cancer. This approach accurately profiles the kinome, aiding therapeutic decisions in breast cancer treatment.

Area of Science:

  • Proteomics and Cancer Biology
  • Mass Spectrometry-based Quantification
  • Kinase Signaling in Oncology

Background:

  • Protein kinases are crucial, often dysregulated, targets in cancer therapy.
  • Current diagnostic methods like immunohistochemistry (IHC) for targets such as ERBB2 are semiquantitative.
  • Accurate quantification of kinases is essential for effective cancer treatment decisions.

Purpose of the Study:

  • To develop a highly sensitive and quantitative mass spectrometry assay for profiling the human kinome.
  • To establish a method for accurate protein kinase quantification in limited clinical samples, such as biopsies.
  • To enable simultaneous quantification of hundreds of kinases for comprehensive cancer profiling.

Main Methods:

  • Kinase Inhibitor Pulldown (KiP) assays utilizing kinase inhibitors as a capture matrix.
  • Optimization of KiP assays and development of a single-shot Parallel Reaction Monitoring (PRM) method for enhanced quantitative fidelity.
  • Application of the KiP-PRM approach to patient-derived xenograft (PDX) models and human cancer biopsies, including the development of stable isotope labeled peptide standards.

Main Results:

  • KiP assays successfully identified differentially expressed and biologically relevant kinases in PDX models.
  • The optimized KiP-PRM method accurately quantified kinases in low-quantity human cancer biopsies.
  • KiP-PRM profiling recapitulated intrinsic subtyping of PDX models and patient biopsies, correlating with transcriptomic data.

Conclusions:

  • The KiP-PRM assay provides a sensitive and quantitative method for broad kinome profiling.
  • This approach can accurately assess kinase expression in limited clinical samples, supporting precision medicine.
  • The developed method offers a powerful tool for cancer diagnostics and therapeutic strategy development.

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