AI Article Synopsis

  • Spleen tyrosine kinase (SYK) is crucial for immune signaling and can be activated through two main models: the "OR-gate" model and the alternative LYN-dependent mechanism.
  • In experiments, researchers created unphosphorylated (upSYK) and phosphorylated (pSYK) versions of SYK to test their activation by a specific peptide (ppITAM) and the SRC family kinase (LYN).
  • Results showed that ppITAM effectively activated SYK when tagged but was less effective without the tag, while LYN more significantly activated untagged SYK, supporting the alternative model that focuses on LYN’s role in phosphorylation and signaling necessary for SYK's full activation.

Article Abstract

Spleen tyrosine kinase (SYK) is a signaling node in many immune pathways and comprises two tandem Src homology (SH) 2 domains, an SH2-kinase linker, and a C-terminal tyrosine kinase domain. Two prevalent models of SYK activation exist. The "OR-gate" model contends that SYK can be fully activated by phosphorylation or binding of its SH2 domains to a dual-phosphorylated immune-receptor tyrosine-based activation motif (ppITAM). An alternative model proposes that SYK activation requires ppITAM binding and phosphorylation of the SH2-kinase linker by a SRC family kinase such as LYN proto-oncogene, SRC family tyrosine kinase (LYN). To evaluate these two models, we generated directly comparable unphosphorylated (upSYK) and phosphorylated (pSYK) proteins with or without an N-terminal glutathione -transferase (GST) tag, resulting in monomeric or obligatory dimeric SYK, respectively. We assessed the ability of a ppITAM peptide and LYN to activate these SYK proteins. The ppITAM peptide strongly activated GST-SYK but was less effective in activating upSYK untagged with GST. LYN alone activated untagged upSYK to a greater extent than did ppITAM, and inclusion of both proteins rapidly and fully activated upSYK. Using immunoblot and phosphoproteomic approaches, we correlated the kinetics and order of site-specific SYK phosphorylation. Our results are consistent with the alternative model, indicating that ppITAM binding primes SYK for rapid LYN-mediated phosphorylation of Tyr-352 and then Tyr-348 of the SH2-kinase linker, which facilitates activation loop phosphorylation and full SYK activation. This gradual activation mechanism may also explain how SYK maintains ligand-independent tonic signaling, important for B-cell development and survival.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6514621PMC
http://dx.doi.org/10.1074/jbc.RA119.008045DOI Listing

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