In this paper, we describe the development of a novel stable isotope N-phosphorylation labeling (SIPL) strategy for peptide de novo sequencing and protein quantification based on organic phosphorus chemistry. The labeling reaction could be performed easily and completed within 40 min in a one-pot reaction without additional cleanup procedures. It was found that N-phosphorylation labeling reagents were activated in situ to form labeling intermediates with high reactivity targeting on N-terminus and ε-amino groups of lysine under mild reaction conditions. The introduction of N-terminal-labeled phosphoryl group not only improved the ionization efficiency of peptides and increased the protein sequence coverage for peptide mass fingerprints but ...
We present a generic approach for quantitative differential proteomics that reduces data complexity ...
A novel stable-isotope labeling approach for identification of phosphopeptides that utilizes adenosi...
Stable isotope labelling in combination with mass spectrometry has emerged as a powerful tool to ide...
AbstractReversible phosphorylation of proteins represents an important component of cellular signali...
N-succinimidyloxycarbonylmethyl tris(2,4,6-trimethoxyphenyl) phosphonium bromide (TMPP-Ac-OSu) react...
Intelligent use of stable isotopes could greatly improve throughput, quantification accuracy, and pe...
Free or resin-bound peptides were phosphorylated at their N-termini by reacting with dimethyl phosph...
We have previously coupled stable isotope dimethyl labeling with IMAC enrichment for quantifying the...
AbstractA procedure for determining the extent of phosphorylation at individual sites of multiply ph...
Accurate quantification of protein expression in biological systems is an increasingly important par...
A great variety of technologies using stable isotope labeling in combination with mass spectrometry ...
We describe a method for comparative quantitation and de novo peptide sequencing of proteins separat...
Nowadays, the method of choice to analyze proteins and peptides is mass spectrometry (MS). Still, se...
Labeling of proteins and peptides with stable heavy isotopes (deuterium, carbon-13, nitrogen-15, and...
Quantification in proteomics largely relies on the incorporation of stable isotopes, with protocols ...
We present a generic approach for quantitative differential proteomics that reduces data complexity ...
A novel stable-isotope labeling approach for identification of phosphopeptides that utilizes adenosi...
Stable isotope labelling in combination with mass spectrometry has emerged as a powerful tool to ide...
AbstractReversible phosphorylation of proteins represents an important component of cellular signali...
N-succinimidyloxycarbonylmethyl tris(2,4,6-trimethoxyphenyl) phosphonium bromide (TMPP-Ac-OSu) react...
Intelligent use of stable isotopes could greatly improve throughput, quantification accuracy, and pe...
Free or resin-bound peptides were phosphorylated at their N-termini by reacting with dimethyl phosph...
We have previously coupled stable isotope dimethyl labeling with IMAC enrichment for quantifying the...
AbstractA procedure for determining the extent of phosphorylation at individual sites of multiply ph...
Accurate quantification of protein expression in biological systems is an increasingly important par...
A great variety of technologies using stable isotope labeling in combination with mass spectrometry ...
We describe a method for comparative quantitation and de novo peptide sequencing of proteins separat...
Nowadays, the method of choice to analyze proteins and peptides is mass spectrometry (MS). Still, se...
Labeling of proteins and peptides with stable heavy isotopes (deuterium, carbon-13, nitrogen-15, and...
Quantification in proteomics largely relies on the incorporation of stable isotopes, with protocols ...
We present a generic approach for quantitative differential proteomics that reduces data complexity ...
A novel stable-isotope labeling approach for identification of phosphopeptides that utilizes adenosi...
Stable isotope labelling in combination with mass spectrometry has emerged as a powerful tool to ide...