Global Proteomic Assessment of the Classical Protein-Tyrosine Phosphatome and “Redoxome”
Author(s) -
Robert Karisch,
Minerva Fernandez,
Paul Taylor,
Carl Virtanen,
Jonathan StGermain,
Lily L. Jin,
Isaac S. Harris,
Jun Mori,
Tak W. Mak,
Yotis A. Senis,
Arne Östman,
Michael F. Moran,
Benjamin G. Neel
Publication year - 2011
Publication title -
cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 26.304
H-Index - 776
eISSN - 1097-4172
pISSN - 0092-8674
DOI - 10.1016/j.cell.2011.07.020
Subject(s) - protein tyrosine phosphatase , biology , tyrosine , phosphorylation , tyrosine phosphorylation , biochemistry , proteomics , phosphatase , cysteine , microbiology and biotechnology , receptor tyrosine kinase , protein phosphorylation , kinase , enzyme , protein kinase a , gene
Protein-tyrosine phosphatases (PTPs), along with protein-tyrosine kinases, play key roles in cellular signaling. All Class I PTPs contain an essential active site cysteinyl residue, which executes a nucleophilic attack on substrate phosphotyrosyl residues. The high reactivity of the catalytic cysteine also predisposes PTPs to oxidation by reactive oxygen species, such as H(2)O(2). Reversible PTP oxidation is emerging as an important cellular regulatory mechanism and might contribute to diseases such as cancer. We exploited these unique features of PTP enzymology to develop proteomic methods, broadly applicable to cell and tissue samples, that enable the comprehensive identification and quantification of expressed classical PTPs (PTPome) and the oxidized subset of the PTPome (oxPTPome). We find that mouse and human cells and tissues, including cancer cells, display distinctive PTPomes and oxPTPomes, revealing additional levels of complexity in the regulation of protein-tyrosine phosphorylation in normal and malignant cells.
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