← Explorer/Network

Regulation of MHC class II signal transduction by the B cell co-receptors CD19 and CD22

Bobbitt K, Justement L2000The Journal of ImmunologyJournal Article
10.4049/jimmunol.165.10.5588PubMedFree full text
Immune/Innate

Abstract

Abstract The major histocompatability class II heterodimer (class II) is expressed on the surface of both resting and activated B cells. Although it is clear that class II expression is required for Ag presentation to CD4+ T cells, substantial evidence suggests that class II serves as a signal transducing receptor that regulates B cell function. In ex vivo B cells primed by Ag receptor (BCR) cross-linking and incubation with IL-4, or B cell lines such as K46-17μmλ, class II ligation leads to the activation of protein tyrosine kinases, including Lyn and Syk and subsequent phospholipase Cγ-dependent mobilization of Ca2+. In this study, experiments demonstrated reciprocal desensitization of class II and BCR signaling upon cross-linking of either receptor, suggesting that the two receptors transduce signals via common processes and/or effector proteins. Because class II and BCR signal transduction pathways exhibit functional similarities, additional studies were conducted to evaluate whether class II signaling is regulated by BCR coreceptors. Upon cross-linking of class II, the BCR coreceptors CD19 and CD22 were inducibly phosphorylated on tyrosine residues. Phosphorylation of CD22 was associated with increased recruitment and binding of the protein tyrosine phosphatase SHP-1. Similarly, tyrosine phosphorylation of CD19 resulted in recruitment and binding of Vav and phosphatidylinositol 3-kinase. Finally, co-cross-linking studies demonstrated that signaling via class II was either attenuated (CD22/SHP-1) or enhanced (CD19/Vav and phosphatidylinositol 3-kinase), depending on the coreceptor that was brought into close proximity. Collectively, these results suggest that CD19 and CD22 modulate class II signaling in a manner similar to that for the BCR.

Key Biomarkers

BCRCD19CD22LynMHC class IIphosphatidylinositol 3-kinasephospholipase CγSHP-1SykVav

Cited By (1)

  • Cognate B Cell Signaling via MHC Class II: Differential Regulation of B Cell Antigen Receptor and MHC Class II/Ig-αβ Signaling by CD22The Journal of Immunology · 2004

References (4)

  • CD22, A B LYMPHOCYTE–SPECIFIC ADHESION MOLECULE THAT REGULATES ANTIGEN RECEPTOR SIGNALING*Annual Review of Immunology · 1997
  • Modeling of T cell contact-dependent B cell activation. IL-4 and antigen receptor ligation primes quiescent B cells to mobilize calcium in response to Ia cross-linkingThe Journal of Immunology · 1991
  • Ia-mediated signal transduction leads to proliferation of primed B lymphocytes.The Journal of Experimental Medicine · 1989
  • Characterization of the signaling function of MHC class II molecules during antigen presentation by B cellsThe Journal of Immunology · 1991

Related Papers

  • Pro-resolving and anti-arthritic properties of the MC1 selective agonist PL8177Frontiers in Immunology · 2022 · 1 shared tag
  • Effects of Omega-3 Polyunsaturated Fatty Acids on the Formation of Adipokines, Cytokines, and Oxylipins in Retroperitoneal Adipose Tissue of MiceInternational Journal of Molecular Sciences · 2024 · 1 shared tag
  • Fungal immunity and pathogenesis in mammals versus the invertebrate model organismGalleria mellonellaPathogens and Disease · 2021 · 1 shared tag
  • TLR signaling pathway and the effects of main immune cells and epigenetics factors on the diagnosis and treatment of infertility and sterilityHeliyon · 2024 · 1 shared tag
  • CGRP sensory neurons promote tissue healing via neutrophils and macrophagesNature · 2024 · 1 shared tag
  • Invited review: Mechanisms of hypophagia during diseaseJournal of Dairy Science · 2021 · 1 shared tag