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Global Analysis of Human Nonreceptor Tyrosine Kinase Specificity Using High-Density Peptide Microarrays

[Image: see text] Protein kinases phosphorylate substrates in the context of specific phosphorylation site sequence motifs. The knowledge of the specific sequences that are recognized by kinases is useful for mapping sites of phosphorylation in protein substrates and facilitates the generation of mo...

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Autores principales: Deng, Yang, Alicea-Velázquez, Nilda L., Bannwarth, Ludovic, Lehtonen, Soili I., Boggon, Titus J., Cheng, Heung-Chin, Hytönen, Vesa P., Turk, Benjamin E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4184454/
https://www.ncbi.nlm.nih.gov/pubmed/25164267
http://dx.doi.org/10.1021/pr500503q
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author Deng, Yang
Alicea-Velázquez, Nilda L.
Bannwarth, Ludovic
Lehtonen, Soili I.
Boggon, Titus J.
Cheng, Heung-Chin
Hytönen, Vesa P.
Turk, Benjamin E.
author_facet Deng, Yang
Alicea-Velázquez, Nilda L.
Bannwarth, Ludovic
Lehtonen, Soili I.
Boggon, Titus J.
Cheng, Heung-Chin
Hytönen, Vesa P.
Turk, Benjamin E.
author_sort Deng, Yang
collection PubMed
description [Image: see text] Protein kinases phosphorylate substrates in the context of specific phosphorylation site sequence motifs. The knowledge of the specific sequences that are recognized by kinases is useful for mapping sites of phosphorylation in protein substrates and facilitates the generation of model substrates to monitor kinase activity. Here, we have adapted a positional scanning peptide library method to a microarray format that is suitable for the rapid determination of phosphorylation site motifs for tyrosine kinases. Peptide mixtures were immobilized on glass slides through a layer of a tyrosine-free Y33F mutant avidin to facilitate the analysis of phosphorylation by radiolabel assay. A microarray analysis provided qualitatively similar results in comparison with the solution phase peptide library “macroarray” method. However, much smaller quantities of kinases were required to phosphorylate peptides on the microarrays, which thus enabled a proteome scale analysis of kinase specificity. We illustrated this capability by microarray profiling more than 80% of the human nonreceptor tyrosine kinases (NRTKs). Microarray results were used to generate a universal NRTK substrate set of 11 consensus peptides for in vitro kinase assays. Several substrates were highly specific for their cognate kinases, which should facilitate their incorporation into kinase-selective biosensors.
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spelling pubmed-41844542015-08-18 Global Analysis of Human Nonreceptor Tyrosine Kinase Specificity Using High-Density Peptide Microarrays Deng, Yang Alicea-Velázquez, Nilda L. Bannwarth, Ludovic Lehtonen, Soili I. Boggon, Titus J. Cheng, Heung-Chin Hytönen, Vesa P. Turk, Benjamin E. J Proteome Res [Image: see text] Protein kinases phosphorylate substrates in the context of specific phosphorylation site sequence motifs. The knowledge of the specific sequences that are recognized by kinases is useful for mapping sites of phosphorylation in protein substrates and facilitates the generation of model substrates to monitor kinase activity. Here, we have adapted a positional scanning peptide library method to a microarray format that is suitable for the rapid determination of phosphorylation site motifs for tyrosine kinases. Peptide mixtures were immobilized on glass slides through a layer of a tyrosine-free Y33F mutant avidin to facilitate the analysis of phosphorylation by radiolabel assay. A microarray analysis provided qualitatively similar results in comparison with the solution phase peptide library “macroarray” method. However, much smaller quantities of kinases were required to phosphorylate peptides on the microarrays, which thus enabled a proteome scale analysis of kinase specificity. We illustrated this capability by microarray profiling more than 80% of the human nonreceptor tyrosine kinases (NRTKs). Microarray results were used to generate a universal NRTK substrate set of 11 consensus peptides for in vitro kinase assays. Several substrates were highly specific for their cognate kinases, which should facilitate their incorporation into kinase-selective biosensors. American Chemical Society 2014-08-18 2014-10-03 /pmc/articles/PMC4184454/ /pubmed/25164267 http://dx.doi.org/10.1021/pr500503q Text en Copyright © 2014 American Chemical Society Terms of Use (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html)
spellingShingle Deng, Yang
Alicea-Velázquez, Nilda L.
Bannwarth, Ludovic
Lehtonen, Soili I.
Boggon, Titus J.
Cheng, Heung-Chin
Hytönen, Vesa P.
Turk, Benjamin E.
Global Analysis of Human Nonreceptor Tyrosine Kinase Specificity Using High-Density Peptide Microarrays
title Global Analysis of Human Nonreceptor Tyrosine Kinase Specificity Using High-Density Peptide Microarrays
title_full Global Analysis of Human Nonreceptor Tyrosine Kinase Specificity Using High-Density Peptide Microarrays
title_fullStr Global Analysis of Human Nonreceptor Tyrosine Kinase Specificity Using High-Density Peptide Microarrays
title_full_unstemmed Global Analysis of Human Nonreceptor Tyrosine Kinase Specificity Using High-Density Peptide Microarrays
title_short Global Analysis of Human Nonreceptor Tyrosine Kinase Specificity Using High-Density Peptide Microarrays
title_sort global analysis of human nonreceptor tyrosine kinase specificity using high-density peptide microarrays
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4184454/
https://www.ncbi.nlm.nih.gov/pubmed/25164267
http://dx.doi.org/10.1021/pr500503q
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