Proteomics

Dataset Information

0

Phosphoproteome enrichment strategy using complementary chemistries of Fe-NTA and TiO2 followed by LC-MS/MS


ABSTRACT: The global phosphoproteome analysis by liquid chromatography-mass spectrometry (LC-MS) has emerged as an important tool to study cell signalling. However, the coverage of phosphoproteome by LC-MS is limited despite various approaches for phosphoprotein enrichment. Studies in literature have exploited the complementary chemistries of affinity materials like metal (immobilized metal ion affinity chromatography- IMAC) and metal oxides (metal oxide affinity chromatography- MOAC) independently and in a sequential elution approach to improve coverage of phosphoproteins. We demonstrate that further improvement in the enrichment of phosphoproteins can be achieved by using these metals and metal oxides independently and pooling the data.

INSTRUMENT(S): TripleTOF 5600

ORGANISM(S): Homo Sapiens (human)

TISSUE(S): Blood Cell

DISEASE(S): Chronic Myeloid Leukemia

SUBMITTER: Neha Agrawal  

LAB HEAD: Dr. Rukmini Govekar

PROVIDER: PXD050933 | Pride | 2025-05-06

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
FeNTA_FT_to_TiO2_R1.group Other
FeNTA_FT_to_TiO2_R1.mgf Mgf
FeNTA_FT_to_TiO2_R1.mzML Mzml
FeNTA_FT_to_TiO2_R1_IDA.mzML Mzml
FeNTA_FT_to_TiO2_R1_Swath1.mzML Mzml
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Publications

Incremental Modification in the Existing Approaches for Affinity Chromatographic Enrichment of Phosphoproteins Improves Their Profile in Liquid Chromatography-Tandem Mass Spectrometry Analysis.

Agrawal Neha N   Govekar Rukmini R  

Analytical science advances 20241220 1


Cell signalling is a vital process in cell physiology, which is driven by protein phosphorylation. Global phosphoproteome analysis by liquid chromatography-tandem mass spectrometry (LC-MS/MS) has thus gained importance in cell signalling research. However, phosphoprotein identification by LC-MS/MS in whole cell lysates, which are complex protein mixtures, is hindered by their poor ionization coupled with suppression of peaks due to low abundance. Enrichment by immobilized metal ion- and metal ox  ...[more]

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