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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
Global impact of oncogenic Src on a phosphotyrosine proteome
Weifeng Luo1, Robbert J Slebos, Salisha Hill
1Department of Cell and Developmental Biology, Cancer Biology, Biostatistics, and Biochemistry, and The Proteomics Laboratory of the Mass Spectrometry Research Center, Vanderbilt University School of Medicine, Nashville, TN 37232, USA.
Abstract:
Elevated activity of Src, the first characterized protein-tyrosine kinase, is associated with progression of many human cancers, and Src has attracted interest as a therapeutic target. Src is known to act in various receptor signaling systems to impact cell behavior, yet it remains likely that the spectrum of Src protein substrates relevant to cancer is incompletely understood. To better understand the cellular impact of deregulated Src kinase activity, we extensively applied a mass spectrometry shotgun phosphotyrosine (pTyr) proteomics strategy to obtain global pTyr profiles of Src-transformed mouse fibroblasts as well as their nontransformed counterparts. A total of 867 peptides representing 563 distinct pTyr sites on 374 different proteins were identified from the Src-transformed cells, while 514 peptides representing 275 pTyr sites on 167 proteins were identified from nontransformed cells. Distinct characteristics of the two profiles were revealed by spectral counting, indicative of pTyr site relative abundance, and by complementary quantitative analysis using stable isotope labeling with amino acids in cell culture (SILAC). While both pTyr profiles are replete with sites on signaling and adhesion/cytoskeletal regulatory proteins, the Src-transformed profile is more diverse with enrichment in sites on metabolic enzymes and RNA and protein synthesis and processing machinery. Forty-three pTyr sites (32 proteins) are predicted as major biologically relevant Src targets on the basis of frequent identification in both cell populations. This select group, of particular interest as diagnostic biomarkers, includes well-established Src sites on signaling/adhesion/cytoskeletal proteins, but also uncharacterized sites of potential relevance to the transformed cell phenotype.
Insights
This study reveals new protein targets of Src kinase in cancer cells using advanced proteomics. These findings offer potential diagnostic biomarkers for cancer progression and therapeutic targeting.
Area of Science:
- Biochemistry
- Molecular Biology
- Proteomics
Background:
- Elevated Src kinase activity is linked to human cancer progression.
- Src's role in cancer signaling pathways is not fully understood.
- Identifying Src substrates is crucial for cancer therapy.
Purpose of the Study:
- To comprehensively map phosphotyrosine (pTyr) sites regulated by Src kinase.
- To compare pTyr profiles in Src-transformed and normal cells.
- To identify novel Src targets relevant to cancer phenotypes.
Main Methods:
- Utilized mass spectrometry-based shotgun phosphotyrosine proteomics.
- Analyzed Src-transformed and nontransformed mouse fibroblasts.
- Employed spectral counting and SILAC for quantitative analysis.
Main Results:
- Identified 563 distinct pTyr sites on 374 proteins in Src-transformed cells.
- Identified 275 distinct pTyr sites on 167 proteins in nontransformed cells.
- Src-transformed cells showed enrichment in metabolic and protein synthesis machinery targets.
Conclusions:
- Src kinase significantly alters the global phosphotyrosine landscape.
- Identified 43 key pTyr sites (32 proteins) as major Src targets.
- These novel targets, including uncharacterized sites, are potential diagnostic biomarkers and therapeutic targets.
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