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A Method for Screening and Validation of Resistant Mutations Against Kinase Inhibitors
Published on: December 7, 2014
Application of multiplexed kinase inhibitor beads to study kinome adaptations in drug-resistant leukemia
Matthew J Cooper1, Nathan J Cox, Eric I Zimmerman
1Department of Pharmacology, School of Medicine, University of North Carolina, Chapel Hill, North Carolina, United States of America.
Abstract:
Protein kinases play key roles in oncogenic signaling and are a major focus in the development of targeted cancer therapies. Imatinib, a BCR-Abl tyrosine kinase inhibitor, is a successful front-line treatment for chronic myelogenous leukemia (CML). However, resistance to imatinib may be acquired by BCR-Abl mutations or hyperactivation of Src family kinases such as Lyn. We have used multiplexed kinase inhibitor beads (MIBs) and quantitative mass spectrometry (MS) to compare kinase expression and activity in an imatinib-resistant (MYL-R) and -sensitive (MYL) cell model of CML. Using MIB/MS, expression and activity changes of over 150 kinases were quantitatively measured from various protein kinase families. Statistical analysis of experimental replicates assigned significance to 35 of these kinases, referred to as the MYL-R kinome profile. MIB/MS and immunoblotting confirmed the over-expression and activation of Lyn in MYL-R cells and identified additional kinases with increased (MEK, ERK, IKKα, PKCβ, NEK9) or decreased (Abl, Kit, JNK, ATM, Yes) abundance or activity. Inhibiting Lyn with dasatinib or by shRNA-mediated knockdown reduced the phosphorylation of MEK and IKKα. Because MYL-R cells showed elevated NF-κB signaling relative to MYL cells, as demonstrated by increased IκBα and IL-6 mRNA expression, we tested the effects of an IKK inhibitor (BAY 65-1942). MIB/MS and immunoblotting revealed that BAY 65-1942 increased MEK/ERK signaling and that this increase was prevented by co-treatment with a MEK inhibitor (AZD6244). Furthermore, the combined inhibition of MEK and IKKα resulted in reduced IL-6 mRNA expression, synergistic loss of cell viability and increased apoptosis. Thus, MIB/MS analysis identified MEK and IKKα as important downstream targets of Lyn, suggesting that co-targeting these kinases may provide a unique strategy to inhibit Lyn-dependent imatinib-resistant CML. These results demonstrate the utility of MIB/MS as a tool to identify dysregulated kinases and to interrogate kinome dynamics as cells respond to targeted kinase inhibition.
Insights
Multiplexed kinase inhibitor beads and mass spectrometry identified MEK and IKKα as key targets in imatinib-resistant chronic myelogenous leukemia (CML). Co-targeting these kinases with Lyn inhibition offers a novel therapeutic strategy for CML treatment.
Area of Science:
- Oncology
- Biochemistry
- Pharmacology
Background:
- Protein kinases are crucial in cancer signaling and targeted therapy development.
- Imatinib is a successful treatment for chronic myelogenous leukemia (CML), but resistance can develop.
- Resistance mechanisms include BCR-Abl mutations and Src family kinase activation, such as Lyn.
Purpose of the Study:
- To compare kinase expression and activity in imatinib-resistant (MYL-R) versus imatinib-sensitive (MYL) CML cell models.
- To identify novel therapeutic targets for overcoming imatinib resistance in CML.
- To demonstrate the utility of multiplexed kinase inhibitor beads and mass spectrometry (MIB/MS) for kinome profiling.
Main Methods:
- Utilized multiplexed kinase inhibitor beads (MIBs) and quantitative mass spectrometry (MS) to analyze over 150 kinases.
- Employed statistical analysis to identify a significant MYL-R kinome profile.
- Confirmed key findings using immunoblotting and targeted kinase inhibition (dasatinib, BAY 65-1942, AZD6244).
Main Results:
- Identified Lyn overexpression and activation in MYL-R cells.
- Discovered increased MEK, ERK, IKKα signaling and decreased Abl, Kit, JNK, ATM, Yes activity/abundance in MYL-R cells.
- Demonstrated that inhibiting MEK and IKKα synergistically reduces cell viability and apoptosis in MYL-R cells, with reduced IL-6 mRNA expression.
Conclusions:
- MIB/MS is effective for identifying dysregulated kinases and kinome dynamics in response to targeted therapy.
- MEK and IKKα are important downstream targets of Lyn in imatinib-resistant CML.
- Co-targeting MEK and IKKα represents a promising strategy to overcome Lyn-dependent imatinib resistance in CML.

