Literature DB >> 15169881

Molecular dissection of 2B4 signaling: implications for signal transduction by SLAM-related receptors.

Riyan Chen1, Francis Relouzat, Romain Roncagalli, Ala Aoukaty, Rusung Tan, Sylvain Latour, André Veillette.   

Abstract

2B4 is a SLAM-related receptor expressed on natural killer (NK) cells and cytotoxic T cells. It can regulate killing and gamma interferon secretion by NK cells, as well as T-cell-mediated cytotoxicity. There are conflicting data regarding the mechanism of action of 2B4. In these studies, we attempted to understand better the nature and basis of 2B4 signaling. Our studies showed that engagement of 2B4 on NK cells triggered a tyrosine phosphorylation signal implicating 2B4, Vav-1, and, to a lesser extent, SHIP-1 and c-Cbl. Structure-function analyses demonstrated that this response was defined by a series of tyrosine-based motifs in the cytoplasmic region of 2B4 and was not influenced by the extracellular or transmembrane segment of 2B4. In addition, the 2B4-induced signal was absolutely dependent on coexpression of SAP, a Src homology 2 (SH2) domain-containing adaptor associating with SLAM-related receptors and mutated in X-linked lymphoproliferative disease. It was also observed that 2B4 was detectably associated with the Src-related protein tyrosine kinase FynT in an immortalized NK cell line. Mutation of arginine 78 of SAP, a residue critical for binding of SAP to FynT, eliminated 2B4-mediated protein tyrosine phosphorylation, implying that SAP promotes 2B4 signaling most probably by recruiting FynT. Finally, despite the similarities in the signaling modalities of 2B4 and its relative SLAM, the natures of the tyrosine phosphorylation signals induced by these two receptors were found to be different. These differences were not caused by variations in the extent of binding to SAP but rather were dictated by the tyrosine-based sequences in the cytoplasmic domain of the receptors. Taken together, these data lead to a better understanding of 2B4 signaling. Furthermore, they provide firm evidence that the signals transduced by the various SLAM-related receptors are unique and that the specificity of these signals is defined by the distinctive arrays of intracytoplasmic tyrosines in the receptors.

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Year:  2004        PMID: 15169881      PMCID: PMC419855          DOI: 10.1128/MCB.24.12.5144-5156.2004

Source DB:  PubMed          Journal:  Mol Cell Biol        ISSN: 0270-7306            Impact factor:   4.272


  35 in total

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3.  Cloning and characterization of the 2B4 gene encoding a molecule associated with non-MHC-restricted killing mediated by activated natural killer cells and T cells.

Authors:  P A Mathew; B A Garni-Wagner; K Land; A Takashima; E Stoneman; M Bennett; V Kumar
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4.  Inactivating mutations in an SH2 domain-encoding gene in X-linked lymphoproliferative syndrome.

Authors:  K E Nichols; D P Harkin; S Levitz; M Krainer; K A Kolquist; C Genovese; A Bernard; M Ferguson; L Zuo; E Snyder; A J Buckler; C Wise; J Ashley; M Lovett; M B Valentine; A T Look; W Gerald; D E Housman; D A Haber
Journal:  Proc Natl Acad Sci U S A       Date:  1998-11-10       Impact factor: 11.205

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7.  The X-linked lymphoproliferative-disease gene product SAP regulates signals induced through the co-receptor SLAM.

Authors:  J Sayos; C Wu; M Morra; N Wang; X Zhang; D Allen; S van Schaik; L Notarangelo; R Geha; M G Roncarolo; H Oettgen; J E De Vries; G Aversa; C Terhorst
Journal:  Nature       Date:  1998-10-01       Impact factor: 49.962

8.  Host response to EBV infection in X-linked lymphoproliferative disease results from mutations in an SH2-domain encoding gene.

Authors:  A J Coffey; R A Brooksbank; O Brandau; T Oohashi; G R Howell; J M Bye; A P Cahn; J Durham; P Heath; P Wray; R Pavitt; J Wilkinson; M Leversha; E Huckle; C J Shaw-Smith; A Dunham; S Rhodes; V Schuster; G Porta; L Yin; P Serafini; B Sylla; M Zollo; B Franco; A Bolino; M Seri; A Lanyi; J R Davis; D Webster; A Harris; G Lenoir; G de St Basile; A Jones; B H Behloradsky; H Achatz; J Murken; R Fassler; J Sumegi; G Romeo; M Vaudin; M T Ross; A Meindl; D R Bentley
Journal:  Nat Genet       Date:  1998-10       Impact factor: 38.330

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Authors:  M H Brown; K Boles; P A van der Merwe; V Kumar; P A Mathew; A N Barclay
Journal:  J Exp Med       Date:  1998-12-07       Impact factor: 14.307

10.  Differential regulation of T cell antigen responsiveness by isoforms of the src-related tyrosine protein kinase p59fyn.

Authors:  D Davidson; L M Chow; M Fournel; A Veillette
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  38 in total

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Review 7.  X-linked lymphoproliferative disease (XLP): a model of impaired anti-viral, anti-tumor and humoral immune responses.

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8.  Structure of natural killer receptor 2B4 bound to CD48 reveals basis for heterophilic recognition in signaling lymphocyte activation molecule family.

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9.  High expression of CD244 and SAP regulated CD8 T cell responses of patients with HTLV-I associated neurologic disease.

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10.  Pediatric hemophagocytic syndromes: a diagnostic and therapeutic challenge.

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