Literature DB >> 12734387

Selective enrichment of thiophosphorylated polypeptides as a tool for the analysis of protein phosphorylation.

Sung Won Kwon1, Sung Chan Kim, Janis Jaunbergs, John R Falck, Yingming Zhao.   

Abstract

A chemoselective alkylation method is described for the isolation and subsequent identification of thiophosphorylated peptides/proteins. The method involves thiophosphorylation of proteins using adenosine 5'-O-(thiotriphosphate) (ATPgammaS) followed by selective in situ alkylation of the newly thiophosphorylated proteins resulting in a stable covalent bond. The chemoselective alkylation exploits the relatively high nucleophilicity at low pH of the sulfur in thiophosphate residues, whereas the nucleophilicities of phosphates, amines, and other functionality of amino acids are negligible or significantly suppressed. Modified alkylation reagents linked to biotin or solid supports (e.g. glass or Sepharose beads) with or without a photocleavable linker facilitate the isolation of the thiophosphorylated peptide/proteins. This approach is demonstrated through the localization of phosphorylation sites on myosin regulatory light chain. We anticipate that this technique will be useful for isolation and subsequent identification of newly thiophosphorylated proteins, produced either in vivo or in vitro, thus facilitating the dissection of protein phosphorylation networks.

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Year:  2003        PMID: 12734387     DOI: 10.1074/mcp.M300039-MCP200

Source DB:  PubMed          Journal:  Mol Cell Proteomics        ISSN: 1535-9476            Impact factor:   5.911


  17 in total

1.  Monitoring Cellular Phosphorylation Signaling Pathways into Chromatin and Down to the Gene Level.

Authors:  Yumiao Han; Zuo-Fei Yuan; Rosalynn C Molden; Benjamin A Garcia
Journal:  Mol Cell Proteomics       Date:  2015-11-05       Impact factor: 5.911

Review 2.  Understanding and exploiting substrate recognition by protein kinases.

Authors:  Benjamin E Turk
Journal:  Curr Opin Chem Biol       Date:  2008-03-07       Impact factor: 8.822

3.  Covalent capture of kinase-specific phosphopeptides reveals Cdk1-cyclin B substrates.

Authors:  Justin D Blethrow; Joseph S Glavy; David O Morgan; Kevan M Shokat
Journal:  Proc Natl Acad Sci U S A       Date:  2008-01-30       Impact factor: 11.205

4.  Chemical genetic approach for kinase-substrate mapping by covalent capture of thiophosphopeptides and analysis by mass spectrometry.

Authors:  Nicholas T Hertz; Beatrice T Wang; Jasmina J Allen; Chao Zhang; Arvin C Dar; Alma L Burlingame; Kevan M Shokat
Journal:  Curr Protoc Chem Biol       Date:  2010-03-01

5.  Recent advances in chemical proteomics: exploring the post-translational proteome.

Authors:  Edward W Tate
Journal:  J Chem Biol       Date:  2008-05-09

6.  Thiol-ene enabled detection of thiophosphorylated kinase substrates.

Authors:  Kathleen C A Garber; Erin E Carlson
Journal:  ACS Chem Biol       Date:  2013-05-17       Impact factor: 5.100

7.  Stable isotope labeling of phosphoproteins for large-scale phosphorylation rate determination.

Authors:  Rosalynn C Molden; Jonathan Goya; Zia Khan; Benjamin A Garcia
Journal:  Mol Cell Proteomics       Date:  2014-02-16       Impact factor: 5.911

Review 8.  The substrates and binding partners of protein kinase Cepsilon.

Authors:  Philip M Newton; Robert O Messing
Journal:  Biochem J       Date:  2010-03-29       Impact factor: 3.857

9.  Biotinylated phosphoproteins from kinase-catalyzed biotinylation are stable to phosphatases: implications for phosphoproteomics.

Authors:  Chamara Senevirathne; Mary Kay H Pflum
Journal:  Chembiochem       Date:  2013-01-17       Impact factor: 3.164

10.  Identification of CDK2 substrates in human cell lysates.

Authors:  Yong Chi; Markus Welcker; Asli A Hizli; Jeffrey J Posakony; Ruedi Aebersold; Bruce E Clurman
Journal:  Genome Biol       Date:  2008-10-13       Impact factor: 13.583

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