Abstract

Activation of the high affinity IgE-binding receptor (FcεRI) results in the tyrosine phosphorylation of two conserved tyrosines located close to the COOH terminus of the protein-tyrosine kinase Syk. Synthetic peptides representing the last 10 amino acids of the tail of Syk with these two tyrosines either nonphosphorylated or phosphorylated were used to precipitate proteins from mast cell lysates. Proteins specifically precipitated by the phosphorylated peptide were identified by mass spectrometry. These included the adaptor proteins SLP-76, Nck-1, Grb2, and Grb2-related adaptor downstream of Shc (GADS) and the protein phosphatases SHIP-1 and TULA-2 (also known as UBASH3B or STS-1). The presence of these in the precipitates was further confirmed by immunoblotting. Using the peptides as probes in far Western blots showed direct binding of the phosphorylated peptide to Nck-1 and SHIP-1. Immunoprecipitations suggested that there were complexes of these proteins associated with Syk especially after receptor activation; in these complexes are Nck, SHIP-1, SLP-76, Grb2, and TULA-2 (UBASH3B or STS-1). The decreased expression of TULA-2 by treatment of mast cells with siRNA increased the FcεRI-induced tyrosine phosphorylation of the activation loop tyrosines of Syk and the phosphorylation of phospholipase C-γ2. There was parallel enhancement of the receptor-induced degranulation and activation of nuclear factor for T cells or nuclear factor κB, indicating that TULA-2, like SHIP-1, functions as a negative regulator of FcεRI signaling in mast cells. Therefore, once phosphorylated, the terminal tyrosines of Syk bind complexes of proteins that are positive and negative regulators of signaling in mast cells.

Highlights

  • Activation of Syk kinase results in phosphorylation of two conserved tyrosines close to its COOH terminus

  • Proteins Are Precipitated by Tyrosine-phosphorylated Synthetic Peptide Corresponding to Syk COOH-terminal Region—There are three adjacent tyrosines (623– 625 in rat Syk) in the COOH-terminal region of Syk that are highly conserved with the exception of Tyr-623, which is absent in human ZAP-70

  • Together with the peptide studies, these results suggest that after receptor activation, which results in phosphorylation of these COOH-terminal tyrosines of Syk, there is binding of complexes of proteins; Nck, SHIP-1, SH2 domaincontaining leukocyte protein of 76 kDa (SLP-76), growth factor receptor-bound protein 2 (Grb2), and TULA-2 is one complex that associates through the Syk-Nck interaction, whereas another complex of SHIP-1, Nck, Grb2, and TULA-2 binds Syk through either Nck or SHIP-1

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Summary

Background

Activation of Syk kinase results in phosphorylation of two conserved tyrosines close to its COOH terminus. Proteins precipitated by the phosphorylated peptide were identified by mass spectrometry These included the adaptor proteins SLP-76, Nck-1, Grb, and Grb2-related adaptor downstream of Shc (GADS) and the protein phosphatases SHIP-1 and TULA-2 ( known as UBASH3B or STS-1). Aggregation of Fc⑀RI results in phosphorylation of the tyrosines of the ITAM in the ␤ and ␥ subunits of the receptor These phosphorylated tyrosines serve as a docking site for the cytoplasmic tyrosine kinase Syk; this binding results in a conformational change and activation of Syk, which is essential for the downstream propagation of signaling in mast cells (4 – 6). Complexes are formed that are important for signaling; for example, tyrosine-phosphorylated LAT functions as a scaffold providing direct binding sites for growth factor receptor-bound protein 2 (Grb2), Grb2-related adaptor downstream of Shc (GADS), and PLC-␥, and through those proteins, there is association of SLP-76, Nck, and other adaptors. Phospholipase C-␥ catalyzes the generation of inositol triphosphate, which

The abbreviations used are
EXPERIMENTAL PROCEDURES
RESULTS
DISCUSSION

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