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Assessment of Resistance to Tyrosine Kinase Inhibitors by an Interrogation of Signal Transduction Pathways by Antibody Arrays
Published on: September 19, 2018
Identification of c-Src tyrosine kinase substrates using mass spectrometry and peptide microarrays
Ramars Amanchy1, Jun Zhong, Henrik Molina
1McKusick-Nathans Institute of Genetic Medicine and the Departments of Biological Chemistry, Pathology and Oncology, Johns Hopkins University, Baltimore, Maryland 21205, USA.
Abstract:
c-Src tyrosine kinase plays a critical role in signal transduction downstream of growth factor receptors, integrins and G protein-coupled receptors. We used stable isotope labeling with amino acids in cell culture (SILAC) approach to identify additional substrates of c-Src tyrosine kinase in human embryonic kidney 293T cells. We have identified 10 known substrates and interactors of c-Src and Src family kinases along with 26 novel substrates. We have experimentally validated 4 of the novel proteins (NICE-4, RNA binding motif 10, FUSE-binding protein 1 and TRK-fused gene) as direct substrates of c-Src using in vitro kinase assays and cotransfection experiments. Significantly, using a c-Src specific inhibitor, we were also able to implicate 3 novel substrates (RNA binding motif 10, EWS1 and Bcl-2 associated transcription factor) in PDGF signaling. Finally, to identify the exact tyrosine residues that are phosphorylated by c-Src on the novel c-Src substrates, we designed custom peptide microarrays containing all possible tyrosine-containing peptides (312 unique peptides) and their mutant counterparts containing a Tyr --> Phe substitution from 14 of the identified substrates. Using this platform, we identified 34 peptides that are phosphorylated by c-Src. We have demonstrated that SILAC-based quantitative proteomics approach is suitable for identification of substrates of nonreceptor tyrosine kinases and can be coupled with peptide microarrays for high-throughput identification of substrate phosphopeptides.
Insights
Researchers identified new substrates for c-Src tyrosine kinase using SILAC proteomics and peptide microarrays. This approach advances the study of nonreceptor tyrosine kinase signaling pathways.
Area of Science:
- Molecular Biology
- Cellular Signaling
- Proteomics
Background:
- c-Src tyrosine kinase is crucial for cellular signal transduction pathways.
- Identifying its substrates is key to understanding cellular processes like growth and migration.
Purpose of the Study:
- To identify novel substrates of c-Src tyrosine kinase.
- To validate these substrates and pinpoint phosphorylation sites.
- To assess the utility of SILAC and peptide microarrays for kinase substrate discovery.
Main Methods:
- Stable Isotope Labeling with Amino acids in cell culture (SILAC) for quantitative proteomics.
- In vitro kinase assays and co-transfection experiments for validation.
- Custom peptide microarrays for phosphosite identification.
Main Results:
- Identified 26 novel substrates of c-Src tyrosine kinase.
- Experimentally validated 4 novel substrates and implicated 3 others in PDGF signaling.
- Pinpointed 34 specific phosphopeptides using peptide microarrays.
Conclusions:
- SILAC-based proteomics is effective for identifying nonreceptor tyrosine kinase substrates.
- Peptide microarrays enable high-throughput phosphopeptide identification.
- This combined approach offers a powerful tool for dissecting kinase signaling networks.

