Munton_2007_Mol.Cell.Proteomics_6_283

Reference

Title : Qualitative and quantitative analyses of protein phosphorylation in naive and stimulated mouse synaptosomal preparations - Munton_2007_Mol.Cell.Proteomics_6_283
Author(s) : Munton RP , Tweedie-Cullen R , Livingstone-Zatchej M , Weinandy F , Waidelich M , Longo D , Gehrig P , Potthast F , Rutishauser D , Gerrits B , Panse C , Schlapbach R , Mansuy IM
Ref : Mol Cell Proteomics , 6 :283 , 2007
Abstract :

Activity-dependent protein phosphorylation is a highly dynamic yet tightly regulated process essential for cellular signaling. Although recognized as critical for neuronal functions, the extent and stoichiometry of phosphorylation in brain cells remain undetermined. In this study, we resolved activity-dependent changes in phosphorylation stoichiometry at specific sites in distinct subcellular compartments of brain cells. Following highly sensitive phosphopeptide enrichment using immobilized metal affinity chromatography and mass spectrometry, we isolated and identified 974 unique phosphorylation sites on 499 proteins, many of which are novel. To further explore the significance of specific phosphorylation sites, we used isobaric peptide labels and determined the absolute quantity of both phosphorylated and non-phosphorylated peptides of candidate phosphoproteins and estimated phosphorylation stoichiometry. The analyses of phosphorylation dynamics using differentially stimulated synaptic terminal preparations revealed activity-dependent changes in phosphorylation stoichiometry of target proteins. Using this method, we were able to differentiate between distinct isoforms of Ca2+/calmodulin-dependent protein kinase (CaMKII) and identify a novel activity-regulated phosphorylation site on the glutamate receptor subunit GluR1. Together these data illustrate that mass spectrometry-based methods can be used to determine activity-dependent changes in phosphorylation stoichiometry on candidate phosphopeptides following large scale phosphoproteome analysis of brain tissue.

PubMedSearch : Munton_2007_Mol.Cell.Proteomics_6_283
PubMedID: 17114649
Gene_locus related to this paper: mouse-2neur , mouse-ndr4 , mouse-q6wqj1

Related information

Gene_locus mouse-2neur    mouse-ndr4    mouse-q6wqj1

Citations formats

Munton RP, Tweedie-Cullen R, Livingstone-Zatchej M, Weinandy F, Waidelich M, Longo D, Gehrig P, Potthast F, Rutishauser D, Gerrits B, Panse C, Schlapbach R, Mansuy IM (2007)
Qualitative and quantitative analyses of protein phosphorylation in naive and stimulated mouse synaptosomal preparations
Mol Cell Proteomics 6 :283

Munton RP, Tweedie-Cullen R, Livingstone-Zatchej M, Weinandy F, Waidelich M, Longo D, Gehrig P, Potthast F, Rutishauser D, Gerrits B, Panse C, Schlapbach R, Mansuy IM (2007)
Mol Cell Proteomics 6 :283