Enrichment is essential for phosphoproteome analysis because phosphorylated proteins are usually present in cells in low abundance. Recently, titanium dioxide (TiO2) has been demonstrated to enrich phosphopeptides from simple peptide mixtures with high specificity; however, the technology has not been optimized. In the present study, significant non-specific bindings were observed when proteome samples were applied to TiO2 columns. Column wash with an NH4Glu solution after loading peptide mixtures significantly increased the efficiency of TiO2 phosphopeptide enrichment with a recovery of up to 84%. Also, for proteome samples, more than a 2-fold increase in unique phosphopeptide identifications has been achieved. The use of NH4Glu for a TiO2...
Phosphorylation is a reversible protein modification that regulates major cellular processes such as...
Titanium dioxide metal oxide affinity chromatography (TiO2-MOAC) is widely regarded as being more se...
Phosphorylation is a reversible protein modification that regulates major cellular processes such as...
Protein phosphorylation is an essential post-translational modification that regulates multiple cell...
Titanium dioxide (TiO2) has very high affinity for phosphopeptides and in recent years it has become...
Phosphopeptide enrichment is essential for large-scale phosphoprotein profiling. Titanium dioxide (T...
Phosphopeptide enrichment is essential for large-scale phosphoprotein profiling. Titanium dioxide (T...
Phosphopeptide enrichment is essential for large-scale phosphoprotein profiling. Titanium dioxide (T...
Phosphopeptide enrichment is essential for large-scale phosphoprotein profiling. Titanium dioxide (T...
Phosphopeptide enrichment is essential for large-scale phosphoprotein profiling. Titanium dioxide (T...
Phosphopeptide enrichment is essential for large-scale phosphoprotein profiling. Titanium dioxide (T...
Reversible protein phosphorylation ranks among the most important post-translational modifications, ...
Outcomes of comparative evaluations of enrichment methods for phosphopeptides depend highly on the e...
Outcomes of comparative evaluations of enrichment methods for phosphopeptides depend highly on the e...
Outcomes of comparative evaluations of enrichment methods for phosphopeptides depend highly on the e...
Phosphorylation is a reversible protein modification that regulates major cellular processes such as...
Titanium dioxide metal oxide affinity chromatography (TiO2-MOAC) is widely regarded as being more se...
Phosphorylation is a reversible protein modification that regulates major cellular processes such as...
Protein phosphorylation is an essential post-translational modification that regulates multiple cell...
Titanium dioxide (TiO2) has very high affinity for phosphopeptides and in recent years it has become...
Phosphopeptide enrichment is essential for large-scale phosphoprotein profiling. Titanium dioxide (T...
Phosphopeptide enrichment is essential for large-scale phosphoprotein profiling. Titanium dioxide (T...
Phosphopeptide enrichment is essential for large-scale phosphoprotein profiling. Titanium dioxide (T...
Phosphopeptide enrichment is essential for large-scale phosphoprotein profiling. Titanium dioxide (T...
Phosphopeptide enrichment is essential for large-scale phosphoprotein profiling. Titanium dioxide (T...
Phosphopeptide enrichment is essential for large-scale phosphoprotein profiling. Titanium dioxide (T...
Reversible protein phosphorylation ranks among the most important post-translational modifications, ...
Outcomes of comparative evaluations of enrichment methods for phosphopeptides depend highly on the e...
Outcomes of comparative evaluations of enrichment methods for phosphopeptides depend highly on the e...
Outcomes of comparative evaluations of enrichment methods for phosphopeptides depend highly on the e...
Phosphorylation is a reversible protein modification that regulates major cellular processes such as...
Titanium dioxide metal oxide affinity chromatography (TiO2-MOAC) is widely regarded as being more se...
Phosphorylation is a reversible protein modification that regulates major cellular processes such as...