Abstract

Neurotrophin signaling plays important roles in regulating the survival, differentiation, and maintenance of neurons in the nervous system. Binding of neurotrophins to their cognate receptors Trks induces transactivation and phosphorylation of the receptor at several tyrosine residues. These phosphorylated tyrosine residues then serve as crucial docking sites for adaptor proteins containing a Src homology 2 or phosphotyrosine binding domain, which upon association with the receptor initiates multiple signaling events to mediate the action of neurotrophins. Here we report the identification of a Src homology 2 domain-containing molecule, SLAM-associated protein (SAP), as an interacting protein of TrkB in a yeast two-hybrid screen. SAP was initially identified as an adaptor molecule in SLAM family receptor signaling for regulating interferon-gamma secretion. In the current study, we found that SAP interacted with TrkA, TrkB, and TrkC receptors in vitro and in vivo. Binding of SAP required Trk receptor activation and phosphorylation at the tyrosine 674 residue, which is located in the activation loop of the kinase domain. Overexpression of SAP with Trk attenuated tyrosine phosphorylation of the receptors and reduced the binding of SH2B and Shc to TrkB. Moreover, overexpression of SAP in PC12 cells suppressed the nerve growth factor-dependent activation of extracellular signal-regulated kinases 1/2 and phospholipase Cgamma, in addition to inhibiting neurite outgrowth. In summary, our findings demonstrated that SAP may serve as a negative regulator of Trk receptor activation and downstream signaling.

Highlights

  • Mediated by a family of receptor tyrosine kinase known as Trks

  • Shc and FRS-2 interact with TrkB via phosphorylated Tyr490, whereas SH2B and rAPS associate with the phosphorylated tyrosine residues in the activation loop

  • In accordance with the inhibition of tyrosine phosphorylation at Tyr674/675, we found that overexpression of SLAM-associated protein (SAP) markedly attenuated the binding affinity of SH2B to TrkB in 293T cells, but the association of SAP with TrkB was apparently unaffected by SH2B overexpression (Fig. 6C)

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Summary

SAP in Trk Signaling

Phosphorylation of all three Trk receptors and attenuates binding of Shc and SH2B to TrkB. Our studies demonstrate that SAP is a novel Trk-interacting protein, revealing its unexpected role as a negative regulator of Trk signaling and function

EXPERIMENTAL PROCEDURES
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