An understanding of the mechanisms of IgE synthesis is essential for devising rational therapeutic interventions in allergy. Two signals are required for the induction of IgE synthesis in human B cells. The first signal is delivered by IL4 and results in the induction of epsilon germ- line transcription but not in IgE synthesis. The second signal is a B cell activation signal which can be delivered by T cells and by EBV virus but not by classical B cell activators. B cell activation by T cells or EBV are not suitable models to dissect the signals required for IgE synthesis. We have recently reported that Mab to the B cell antigen CD40 synergizes with IL4 to induce IgE synthesis in highly purified B cells. CD40 is likely to play a role in the physiologic regulation of IgE because recombinant soluble CD40 inhibits T cell driven IL4 dependent IgE synthesis. We propose to study the mechanisms of induction of IgE synthesis by anti-CD40 + IL4 and to use this model to study IgE regulation.
Our aims are to: 1) Study the characteristics of the B cell responding to anti-CD40 + IL4 as to a) activation state, b) surface phenotype, c) frequency. 2) Examine S mu -> S epsilon switching in B cells stimulated with anti- CD40 + IL4 by a) PCR analysis of switch recombination, b) sequencing the Smu -> S epsilon junction, c) determining the role of the CD40 signal in switch recombination. 3) Examine the modulation of IgE synthesis in B cells by receptor crosstalk, cytokines nd mediators of allergy. 4) Study the role of CD40 in T cell driven IgE synthesis by examining a) the role of CD40 in IgE synthesis induced by cognate vs. noncognate T-B cell interactions, b) surface expression of the putative CD40 ligand by T cells. The proposed studies should enhance our understanding of the IgE response and are relevant to the study of switching to isotypes other than IgE as well as to study of potential switch defects in patients with antibody deficiency syndromes.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
5R01AI031136-04
Application #
2066143
Study Section
Immunological Sciences Study Section (IMS)
Project Start
1992-03-01
Project End
1997-02-28
Budget Start
1995-03-01
Budget End
1996-02-29
Support Year
4
Fiscal Year
1995
Total Cost
Indirect Cost
Name
Children's Hospital Boston
Department
Type
DUNS #
076593722
City
Boston
State
MA
Country
United States
Zip Code
02115
Ozcan, Esra; Rauter, Ingrid; Garibyan, Lilit et al. (2011) Toll-like receptor 9, transmembrane activator and calcium-modulating cyclophilin ligand interactor, and CD40 synergize in causing B-cell activation. J Allergy Clin Immunol 128:601-9.e1-4
Jabara, Haifa H; Angelini, Federica; Brodeur, Scott R et al. (2011) Ligation of CD46 to CD40 inhibits CD40 signaling in B cells. Int Immunol 23:215-21
Jabara, Haifa H; Weng, Yu; Sannikova, Tatyana et al. (2009) TRAF2 and TRAF3 independently mediate Ig class switching driven by CD40. Int Immunol 21:477-88
Jabara, Haifa H; Chaudhuri, Jayanta; Dutt, Shilpee et al. (2008) B-cell receptor cross-linking delays activation-induced cytidine deaminase induction and inhibits class-switch recombination to IgE. J Allergy Clin Immunol 121:191-196.e2
Castigli, Emanuela; Wilson, Stephen A; Elkhal, Abdallah et al. (2007) Transmembrane activator and calcium modulator and cyclophilin ligand interactor enhances CD40-driven plasma cell differentiation. J Allergy Clin Immunol 120:885-91
Orange, Jordan S; Levy, Ofer; Geha, Raif S (2005) Human disease resulting from gene mutations that interfere with appropriate nuclear factor-kappaB activation. Immunol Rev 203:21-37
Castigli, Emanuela; Wilson, Stephen A; Scott, Sumi et al. (2005) TACI and BAFF-R mediate isotype switching in B cells. J Exp Med 201:35-9
Jabara, Haifa H; Geha, Raif S (2005) Jun N-terminal kinase is essential for CD40-mediated IgE class switching in B cells. J Allergy Clin Immunol 115:856-63
Dedeoglu, Fatma; Horwitz, Bruce; Chaudhuri, Jayanta et al. (2004) Induction of activation-induced cytidine deaminase gene expression by IL-4 and CD40 ligation is dependent on STAT6 and NFkappaB. Int Immunol 16:395-404
Orange, Jordan S; Jain, Ashish; Ballas, Zuhair K et al. (2004) The presentation and natural history of immunodeficiency caused by nuclear factor kappaB essential modulator mutation. J Allergy Clin Immunol 113:725-33

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