Functional Cloning of Src-like Adapter Protein-2 (SLAP-2), a Novel Inhibitor of Antigen Receptor Signaling

Author:

Holland Sacha J.1,Liao X. Charlene1,Mendenhall Marcy K.1,Zhou Xiulan1,Pardo Jorge1,Chu Peter1,Spencer Collin1,Fu Alan1,Sheng Ning1,Yu Peiwen1,Pali Erlina1,Nagin Anup1,Shen Mary1,Yu Simon1,Chan Eva1,Wu Xian1,Li Connie1,Woisetschlager Max2,Aversa Gregorio2,Kolbinger Frank3,Bennett Mark K.1,Molineaux Susan1,Luo Ying1,Payan Donald G.1,Mancebo Helena S.Y.1,Wu Jun1

Affiliation:

1. Rigel, Incorporated, South San Francisco, CA 94080

2. Novartis Forschungsinstitut GmbH, A-1235 Vienna, Austria

3. Novartis Pharma AG, CH-4002 Basel, Switzerland

Abstract

In an effort to identify novel therapeutic targets for autoimmunity and transplant rejection, we developed and performed a large-scale retroviral-based functional screen to select for proteins that inhibit antigen receptor-mediated activation of lymphocytes. In addition to known regulators of antigen receptor signaling, we identified a novel adaptor protein, SLAP-2 which shares 36% sequence similarity with the known Src-like adaptor protein, SLAP. Similar to SLAP, SLAP-2 is predominantly expressed in hematopoietic cells. Overexpression of SLAP-2 in B and T cell lines specifically impaired antigen receptor-mediated signaling events, including CD69 surface marker upregulation, nuclear factor of activated T cells (NFAT) promoter activation and calcium influx. Signaling induced by phorbol myristate acetate (PMA) and ionomycin was not significantly reduced, suggesting SLAP-2 functions proximally in the antigen receptor signaling cascade. The SLAP-2 protein contains an NH2-terminal myristoylation consensus sequence and SH3 and SH2 Src homology domains, but lacks a tyrosine kinase domain. In antigen receptor–stimulated cells, SLAP-2 associated with several tyrosine phosphorylated proteins, including the ubiquitin ligase Cbl. Deletion of the COOH terminus of SLAP-2 blocked function and abrogated its association with Cbl. Mutation of the putative myristoylation site of SLAP-2 compromised its inhibitory activity and impaired its localization to the membrane compartment. Our identification of the negative regulator SLAP-2 demonstrates that a retroviral-based screening strategy may be an efficient way to identify and characterize the function of key components of many signal transduction systems.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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