Abstract
Protein phosphorylation is a major mechanism of post-translational protein modification used to control cellular signaling. A challenge in phosphoproteomics is to identify the direct substrates of each protein kinase. Herein, we describe a chemical strategy for delivery of a bio-orthogonal affinity tag to the substrates of an individual protein kinase. The kinase of interest is engineered to transfer a phosphorothioate moiety to phosphoacceptor hydroxyl groups on direct substrates. In a second nonenzymatic step, the introduced phosphorothioate is alkylated with p-nitrobenzylmesylate (PNBM). Antibodies directed against the alkylated phosphorothioate epitope recognize these labeled substrates, but not alkylation products of other cellular nucleophiles. This strategy is demonstrated with Cdk1/cyclinB substrates using ELISA, western blotting, and immunoprecipitation in the context of whole cell lysates.
MeSH Terms
Adenosine Triphosphate/analogs & derivatives,chemistry,metabolism
Affinity Labels/chemistry,metabolism
CDC2 Protein Kinase/metabolism
Cell Cycle Proteins/chemistry,isolation & purification,metabolism
HeLa Cells
Histones/chemistry,isolation & purification,metabolism
Humans
Immunoconjugates/chemistry,metabolism
Immunoglobulin G/chemistry,metabolism
Immunoglobulins/chemistry,metabolism
Mesylates/chemistry
Protein-Tyrosine Kinases/chemistry,isolation & purification,metabolism
Saccharomyces cerevisiae Proteins/chemistry,isolation & purification,metabolism
Substrate Specificity
Chemicals
Affinity Labels
Cell Cycle Proteins
Histones
IgY
Immunoconjugates
Immunoglobulin G
Immunoglobulins
Mesylates
Saccharomyces cerevisiae Proteins
adenosine 5'-O-(3-thiotriphosphate)
Adenosine Triphosphate
SWE1 protein, S cerevisiae
Protein-Tyrosine Kinases
CDC2 Protein Kinase
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Allen Jasmina J
Department of Cellular and Molecular Pharmacology, University of California, San Francisco, California 94143, USA.
Lazerwith Scott E
Shokat Kevan M
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