CD5 Negatively Regulates the T-Cell Antigen Receptor Signal Transduction Pathway: Involvement of SH2-Containing Phosphotyrosine Phosphatase SHP-1

Author:

Perez-Villar Juan J.1,Whitney Gena S.1,Bowen Michael A.1,Hewgill Derek H.1,Aruffo Alejandro A.1,Kanner Steven B.1

Affiliation:

1. Immunology and Inflammation Drug Discovery, Bristol-Myers Squibb Pharmaceutical Research Institute, Princeton, New Jersey 08543

Abstract

ABSTRACT The negative regulation of T- or B-cell antigen receptor signaling by CD5 was proposed based on studies of thymocytes and peritoneal B-1a cells from CD5-deficient mice. Here, we show that CD5 is constitutively associated with phosphotyrosine phosphatase activity in Jurkat T cells. CD5 was found associated with the Src homology 2 (SH2) domain containing hematopoietic phosphotyrosine phosphatase SHP-1 in both Jurkat cells and normal phytohemagglutinin-expanded T lymphoblasts. This interaction was increased upon T-cell receptor (TCR)-CD3 cell stimulation. CD5 co-cross-linking with the TCR-CD3 complex down-regulated the TCR-CD3-increased Ca 2+ mobilization in Jurkat cells. In addition, stimulation of Jurkat cells or normal phytohemagglutinin-expanded T lymphoblasts through TCR-CD3 induced rapid tyrosine phosphorylation of several protein substrates, which was substantially diminished after CD5 cross-linking. The CD5-regulated substrates included CD3ζ, ZAP-70, Syk, and phospholipase Cγl but not the Src family tyrosine kinase p56 lck . By mutation of all four CD5 intracellular tyrosine residues to phenylalanine, we found the membrane-proximal tyrosine at position 378, which is located in an immunoreceptor tyrosine-based inhibitory (ITIM)-like motif, crucial for SHP-1 association. The F378 point mutation ablated both SHP-1 binding and the down-regulating activity of CD5 during TCR-CD3 stimulation. These results suggest a critical role of the CD5 ITIM-like motif, which by binding to SHP-1 mediates the down-regulatory activity of this receptor.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

Reference52 articles.

1. Association of an activation inducible serine kinase activity with CD5;Alberola-Ila J.;J. Immunol.,1993

2. CD6-ligand interactions: a paradigm for SRCR domain function?;Aruffo A.;Immunol. Today,1997

3. Identification of a novel inducible cell-surface ligand of CD5 on activated lymphocytes;Biaconte L.;J. Exp. Med.,1996

4. CD5-mediated negative regulation of antigen receptor-induced growth signal in B-1 cells;Bikah G.;Science,1996

5. Structural and chromosomal location of the human CD6 gene: detection of five human isoforms;Bowen M. A.;J. Immunol.,1996

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