Reversible protein glycosylation and phosphorylation tightly modulate important cellular processes and are closely involved in pathological processes in a crosstalk dependent manner. Because of their significance and low abundances of glyco- and phosphopeptides, several strategies have been developed to simultaneously enrich and co-elute glyco- and phosphopeptides. However, the co-existence of deglycosylated peptides and phosphopeptides aggravates the mass spectrometry analysis. Herein we developed a novel strategy to analyze glyco- and phosphopeptides based on simultaneous enrichment with TiO2, on-line deglycosylation and collection of deglycosylated peptides, and subsequent elution of phosphopeptides. To optimize on-line deglycosylation c...
Enrichment is essential for phosphoproteome analysis because phosphorylated proteins are usually pre...
Titanium dioxide (TiO2) has very high affinity for phosphopeptides and in recent years it has become...
Protein phosphorylation and glycosylation coordinately regulate numerous complex biological processe...
Reversible protein glycosylation and phosphorylation tightly modulate important cellular processes a...
Reversible protein glycosylation and phosphorylation tightly modulate important cellular processes a...
Reversible protein glycosylation and phosphorylation tightly modulate important cellular processes a...
Reversible protein glycosylation and phosphorylation tightly modulate important cellular processes a...
Reversible protein glycosylation and phosphorylation tightly modulate important cellular processes a...
Reversible protein glycosylation and phosphorylation tightly modulate important cellular processes a...
Reversible protein glycosylation and phosphorylation tightly modulate important cellular processes a...
Reversible protein glycosylation and phosphorylation tightly modulate important cellular processes a...
Reversible protein glycosylation and phosphorylation tightly modulate important cellular processes a...
Post-translational modifications (PTMs) are essential for the regulation of all cellular processes. ...
Posttranslational modifications (PTMs) such as phosphorylation, acetylation, and glycosylation are a...
Protein phosphorylation is an essential post-translational modification that regulates multiple cell...
Enrichment is essential for phosphoproteome analysis because phosphorylated proteins are usually pre...
Titanium dioxide (TiO2) has very high affinity for phosphopeptides and in recent years it has become...
Protein phosphorylation and glycosylation coordinately regulate numerous complex biological processe...
Reversible protein glycosylation and phosphorylation tightly modulate important cellular processes a...
Reversible protein glycosylation and phosphorylation tightly modulate important cellular processes a...
Reversible protein glycosylation and phosphorylation tightly modulate important cellular processes a...
Reversible protein glycosylation and phosphorylation tightly modulate important cellular processes a...
Reversible protein glycosylation and phosphorylation tightly modulate important cellular processes a...
Reversible protein glycosylation and phosphorylation tightly modulate important cellular processes a...
Reversible protein glycosylation and phosphorylation tightly modulate important cellular processes a...
Reversible protein glycosylation and phosphorylation tightly modulate important cellular processes a...
Reversible protein glycosylation and phosphorylation tightly modulate important cellular processes a...
Post-translational modifications (PTMs) are essential for the regulation of all cellular processes. ...
Posttranslational modifications (PTMs) such as phosphorylation, acetylation, and glycosylation are a...
Protein phosphorylation is an essential post-translational modification that regulates multiple cell...
Enrichment is essential for phosphoproteome analysis because phosphorylated proteins are usually pre...
Titanium dioxide (TiO2) has very high affinity for phosphopeptides and in recent years it has become...
Protein phosphorylation and glycosylation coordinately regulate numerous complex biological processe...