Authors
Albrecht Gruhler, Jesper V Olsen, Shabaz Mohammed, Peter Mortensen, Nils J Færgeman, Matthias Mann, Ole N Jensen
Publication date
2005/3/1
Journal
Molecular & cellular proteomics
Volume
4
Issue
3
Pages
310-327
Publisher
Elsevier
Description
Cellular processes such as proliferation, differentiation, and adaptation to environmental changes are regulated by protein phosphorylation. Development of sensitive and comprehensive analytical methods for determination of protein phosphorylation is therefore a necessity in the pursuit of a detailed molecular view of complex biological processes. We present a quantitative modification-specific proteomic approach that combines stable isotope labeling by amino acids in cell culture (SILAC) for quantitation with IMAC for phosphopeptide enrichment and three stages of mass spectrometry (MS/MS/MS) for identification. This integrated phosphoproteomic technology identified and quantified phosphorylation in key regulator and effector proteins of a prototypical G-protein-coupled receptor signaling pathway, the yeast pheromone response. SILAC encoding of yeast proteomes was achieved by incorporation of [13C6 …
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Scholar articles
A Gruhler, JV Olsen, S Mohammed, P Mortensen… - Molecular & cellular proteomics, 2005