2B4 Utilizes ITAM-Containing Receptor Complexes to Initiate Intracellular Signaling and Cytolysis1

2B4 is a member of the SLAM receptor family capable of activating NK cell cytotoxicity in the context of EBV infection. SAP (SLAM Associated Protein) deficiency causes defective signaling downstream of SLAM family receptors and high susceptibility to EBV. 2B4 costimulates n atural c ytotoxicity r ec...

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Veröffentlicht in:Molecular immunology 2011-03, Vol.48 (9-10), p.1149-1159
Hauptverfasser: Bida, Anya T., Neff, Jadee L. Upshaw, Dick, Christopher J., Schoon, Renee A., Brickshawana, Adipong, Chini, Claudia C., Billadeau, Daniel D.
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Sprache:eng
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Zusammenfassung:2B4 is a member of the SLAM receptor family capable of activating NK cell cytotoxicity in the context of EBV infection. SAP (SLAM Associated Protein) deficiency causes defective signaling downstream of SLAM family receptors and high susceptibility to EBV. 2B4 costimulates n atural c ytotoxicity r eceptor (NCR) and TCR initiated signals to induce cellular cytotoxicity and cytokine release. The 2B4-SAP signal transduction pathway is not predicted to overlap with the TCR-ITAM pathway, although SAP is required for some TCR-induced signals. We therefore examined the functional relationship between SLAM family receptor 2B4 and ITAM-containing adaptor complexes. Removal of FcεRIγ or CD3ζ-containing complexes, using genetically manipulated cell lines or siRNA specific suppression, significantly reduces 2B4-initiated functions in T and NK cells, respectively. Consistent with this relationship, Syk and ZAP-70 are capable of transducing 2B4 signals for calcium mobilization and cytolysis. Furthermore, ITAM-containing molecules constitutively associate with SAP. These results suggest a potential physical association between 2B4 and the ITAM receptor complexes that is required for 2B4-initiated signaling and cell-mediated killing.
ISSN:0161-5890
1872-9142
DOI:10.1016/j.molimm.2011.02.008