AbstractA procedure for determining the extent of phosphorylation at individual sites of multiply phosphorylated proteins was developed and applied to two polyphosphorylated proteins. The protocol, using simple chemical (Fischer methyl-esterification) and enzymatic (phosphatase) modification steps and an accessible isotopic labeling reagent (methyl alcohol-d4), is described in detail. Site-specific phosphorylation stoichiometries are derived from the comparison of chemically identical but isotopically distinct peptide species analyzed by microspray liquid chomatography-mass spectrometry (μLC-MS) using a Micromass Q-TOF2 mass spectrometer. Ten phosphorylation sites were unambiguously identified in tryptic digests of both proteins, and phosph...
An approach for multiparallel target identification and relative quantification of in vitro kinase a...
We show that parallel reaction monitoring (PRM) can be used for exact quantification of phosphorylat...
Improvement of the Quantification Accuracy and Throughput for Phosphoproteome Analysis by a Pseudo T...
AbstractA procedure for determining the extent of phosphorylation at individual sites of multiply ph...
Quantification of the stoichiometry of phosphorylation is usually achieved using a mixture of phosph...
AbstractReversible phosphorylation of proteins represents an important component of cellular signali...
As one of the most studied post-translational modifications (PTM), protein phosphorylation plays an ...
Mass spectrometry (MS) based quantitative analyses of proteome and proteome post-translational modif...
In this paper, we describe the development of a novel stable isotope N-phosphorylation labeling (SIP...
We have previously coupled stable isotope dimethyl labeling with IMAC enrichment for quantifying the...
The reversible phosphorylation of proteins plays a major role in many vital cellular processes by mo...
Protein phosphorylation modification regulates numerous cellular functions by a reversible and selec...
A novel stable-isotope labeling approach for identification of phosphopeptides that utilizes adenosi...
Labeling of proteins and peptides with stable heavy isotopes (deuterium, carbon-13, nitrogen-15, and...
Multisite protein phosphorylation appears to be quite common. Nevertheless our understanding of howm...
An approach for multiparallel target identification and relative quantification of in vitro kinase a...
We show that parallel reaction monitoring (PRM) can be used for exact quantification of phosphorylat...
Improvement of the Quantification Accuracy and Throughput for Phosphoproteome Analysis by a Pseudo T...
AbstractA procedure for determining the extent of phosphorylation at individual sites of multiply ph...
Quantification of the stoichiometry of phosphorylation is usually achieved using a mixture of phosph...
AbstractReversible phosphorylation of proteins represents an important component of cellular signali...
As one of the most studied post-translational modifications (PTM), protein phosphorylation plays an ...
Mass spectrometry (MS) based quantitative analyses of proteome and proteome post-translational modif...
In this paper, we describe the development of a novel stable isotope N-phosphorylation labeling (SIP...
We have previously coupled stable isotope dimethyl labeling with IMAC enrichment for quantifying the...
The reversible phosphorylation of proteins plays a major role in many vital cellular processes by mo...
Protein phosphorylation modification regulates numerous cellular functions by a reversible and selec...
A novel stable-isotope labeling approach for identification of phosphopeptides that utilizes adenosi...
Labeling of proteins and peptides with stable heavy isotopes (deuterium, carbon-13, nitrogen-15, and...
Multisite protein phosphorylation appears to be quite common. Nevertheless our understanding of howm...
An approach for multiparallel target identification and relative quantification of in vitro kinase a...
We show that parallel reaction monitoring (PRM) can be used for exact quantification of phosphorylat...
Improvement of the Quantification Accuracy and Throughput for Phosphoproteome Analysis by a Pseudo T...