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Identification of c-Src Tyrosine Kinase Substrates Using Mass Spectrometry and Peptide Microarrays

[Image: see text] 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...

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Autores principales: Amanchy, Ramars, Zhong, Jun, Molina, Henrik, Chaerkady, Raghothama, Iwahori, Akiko, Kalume, Dario Eluan, Grønborg, Mads, Joore, Jos, Cope, Leslie, Pandey, Akhilesh
Formato: Texto
Lenguaje:English
Publicado: American Chemical Society 2008
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2646669/
https://www.ncbi.nlm.nih.gov/pubmed/18698806
http://dx.doi.org/10.1021/pr800198w
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author Amanchy, Ramars
Zhong, Jun
Molina, Henrik
Chaerkady, Raghothama
Iwahori, Akiko
Kalume, Dario Eluan
Grønborg, Mads
Joore, Jos
Cope, Leslie
Pandey, Akhilesh
author_facet Amanchy, Ramars
Zhong, Jun
Molina, Henrik
Chaerkady, Raghothama
Iwahori, Akiko
Kalume, Dario Eluan
Grønborg, Mads
Joore, Jos
Cope, Leslie
Pandey, Akhilesh
author_sort Amanchy, Ramars
collection PubMed
description [Image: see text] 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.
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spelling pubmed-26466692009-03-20 Identification of c-Src Tyrosine Kinase Substrates Using Mass Spectrometry and Peptide Microarrays Amanchy, Ramars Zhong, Jun Molina, Henrik Chaerkady, Raghothama Iwahori, Akiko Kalume, Dario Eluan Grønborg, Mads Joore, Jos Cope, Leslie Pandey, Akhilesh J Proteome Res [Image: see text] 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. American Chemical Society 2008-08-13 2008-09-05 /pmc/articles/PMC2646669/ /pubmed/18698806 http://dx.doi.org/10.1021/pr800198w Text en Copyright © 2008 American Chemical Society http://pubs.acs.org This is an open-access article distributed under the ACS AuthorChoice Terms & Conditions. Any use of this article, must conform to the terms of that license which are available at http://pubs.acs.org. 40.75
spellingShingle Amanchy, Ramars
Zhong, Jun
Molina, Henrik
Chaerkady, Raghothama
Iwahori, Akiko
Kalume, Dario Eluan
Grønborg, Mads
Joore, Jos
Cope, Leslie
Pandey, Akhilesh
Identification of c-Src Tyrosine Kinase Substrates Using Mass Spectrometry and Peptide Microarrays
title Identification of c-Src Tyrosine Kinase Substrates Using Mass Spectrometry and Peptide Microarrays
title_full Identification of c-Src Tyrosine Kinase Substrates Using Mass Spectrometry and Peptide Microarrays
title_fullStr Identification of c-Src Tyrosine Kinase Substrates Using Mass Spectrometry and Peptide Microarrays
title_full_unstemmed Identification of c-Src Tyrosine Kinase Substrates Using Mass Spectrometry and Peptide Microarrays
title_short Identification of c-Src Tyrosine Kinase Substrates Using Mass Spectrometry and Peptide Microarrays
title_sort identification of c-src tyrosine kinase substrates using mass spectrometry and peptide microarrays
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2646669/
https://www.ncbi.nlm.nih.gov/pubmed/18698806
http://dx.doi.org/10.1021/pr800198w
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