Literature DB >> 19263479

Techniques for phosphopeptide enrichment prior to analysis by mass spectrometry.

Jamie D Dunn1, Gavin E Reid, Merlin L Bruening.   

Abstract

Mass spectrometry is the tool of choice to investigate protein phosphorylation, which plays a vital role in cell regulation and diseases such as cancer. However, low abundances of phosphopeptides and low degrees of phosphorylation typically necessitate isolation and concentration of phosphopeptides prior to MS analysis. This review discusses the enrichment of phosphopeptides with immobilized metal affinity chromatography, reversible covalent binding, and metal oxide affinity chromatography. Capture of phosphopeptides on TiO(2) seems especially promising in terms of selectivity and recovery, but the success of all methods depends on careful selection of binding, washing, and elution solutions. Enrichment techniques are complementary, such that a combination of methods greatly enhances the number of phosphopeptides isolated from complex samples. Development of a standard series of phosphopeptides in a highly complex mixture of digested proteins would greatly aid the comparison of different enrichment methods. Phosphopeptide binding to magnetic beads and on-plate isolation prior to MALDI-MS are emerging as convenient methods for purification of small (microL) samples. On-plate enrichment can yield >70% recoveries of phosphopeptides in mixtures of a few digested proteins and can avoid sample-handling steps, but this technique is likely limited to relatively simple samples such as immunoprecipitates. With recent advances in enrichment techniques in hand, MS analysis should provide important insights into phosphorylation pathways. Copyright 2009 Wiley Periodicals, Inc.

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Year:  2010        PMID: 19263479     DOI: 10.1002/mas.20219

Source DB:  PubMed          Journal:  Mass Spectrom Rev        ISSN: 0277-7037            Impact factor:   10.946


  50 in total

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2.  Sulfonium ion derivatization, isobaric stable isotope labeling and data dependent CID- and ETD-MS/MS for enhanced phosphopeptide quantitation, identification and phosphorylation site characterization.

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4.  Phosphoproteomics Profiling of Tobacco Mature Pollen and Pollen Activated in vitro.

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5.  Proteolytic Digestion and TiO2 Phosphopeptide Enrichment Microreactor for Fast MS Identification of Proteins.

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Review 6.  Recent advances in enrichment and separation strategies for mass spectrometry-based phosphoproteomics.

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Journal:  Electrophoresis       Date:  2014-06-16       Impact factor: 3.535

7.  Covalent tagging of phosphorylated peptides by phosphate-specific deoxyribozymes.

Authors:  Amit Sachdeva; Madhavaiah Chandra; Jagadeeswaran Chandrasekar; Scott K Silverman
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Review 8.  The coming of age of phosphoproteomics--from large data sets to inference of protein functions.

Authors:  Philippe P Roux; Pierre Thibault
Journal:  Mol Cell Proteomics       Date:  2013-09-13       Impact factor: 5.911

Review 9.  Insights into MHC class I antigen processing gained from large-scale analysis of class I ligands.

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Review 10.  Quantitative analysis of global phosphorylation changes with high-resolution tandem mass spectrometry and stable isotopic labeling.

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Journal:  Methods       Date:  2013-04-21       Impact factor: 3.608

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