Inference of kinase-signaling networks in human myeloid cell line models by Phosphoproteomics using kinase activity

Mahmoud Hallal1,2, Sophie Braga-Lagache2, Jovana Jankovic1

  • 1Department of Hematology and Central Hematology Laboratory, Inselspital, Bern University Hospital, University of Bern, Bern, Switzerland.

BMC Cancer
|July 9, 2021
PubMed
Abstract

Insights

A new Kinase-Activity Enrichment Analysis (KAEA) pipeline improves phosphoproteomics analysis for myeloid malignancies. This tool aids in understanding kinase activity and predicting response to targeted cancer therapies.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Oncology

Background:

  • Myeloid malignancies often resist targeted therapies, necessitating better predictive biomarkers.
  • Genomics offers insights but has limitations in predicting therapeutic outcomes and resistance mechanisms.
  • Dysregulated kinase activity is central to cancer, driving the use of kinase inhibitors.

Purpose of the Study:

  • To develop and validate a novel phosphoproteomics workflow and Kinase-Activity Enrichment Analysis (KAEA) pipeline.
  • To improve the inference of kinase activities and identification of biomarkers for targeted cancer therapy response and resistance.
  • To characterize kinase activity in myeloid cell lines treated with kinase inhibitors.

Main Methods:

  • A phosphoproteomics workflow using titanium dioxide phosphopeptide enrichment and LC-MS.
  • Application of the Kinase-Activity Enrichment Analysis (KAEA) pipeline utilizing the SetRank algorithm.
  • Inference of kinase activities using a comprehensive database and NetworKIN for in-silico predictions.

Main Results:

  • KAEA identified biologically relevant kinase activities in unperturbed myeloid cell lines.
  • The pipeline correctly detected direct and indirect kinase targets of Nilotinib and Midostaurin in relevant cell lines.
  • The KAEA pipeline successfully characterized previously unexplored kinase activities within signaling networks.

Conclusions:

  • A novel KAEA pipeline for analyzing phosphoproteomics MS data was developed and validated.
  • This tool enhances the characterization of kinase behavior in response to targeted treatments for translational researchers.
  • Further studies are needed to assess KAEA's utility in primary patient samples for understanding disease progression and treatment failure.

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