4.5 Article

Complexes between nuclear factor-κB p65 and signal transducer and activator of transcription 3 are key actors in inducing activation-induced cytidine deaminase expression and immunoglobulin A production in CD40L plus interleukin-10-treated human blood B cells

Journal

CLINICAL AND EXPERIMENTAL IMMUNOLOGY
Volume 166, Issue 2, Pages 171-183

Publisher

WILEY
DOI: 10.1111/j.1365-2249.2011.04465.x

Keywords

B cells; cellular signalling; IgA; NF-kappa B; STAT3

Categories

Funding

  1. Convention Interregional du Massif Central 'Reseau switch' MENRT [01Y0242b]
  2. Regional Blood Bank, EFS Auvergne-Loire, France
  3. French Ministry for Education, Research and Technology (MENRT)

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The signal transducer and activator of transcription 3 (STAT3) transcription factor pathway plays an important role in many biological phenomena. STAT3 transcription is triggered by cytokine-associated signals. Here, we use isolated human B cells to analyse the role of STAT3 in interleukin (IL)-10 induced terminal B cell differentiation and in immunoglobulin (Ig)A production as a characteristic readout of IL-10 signalling. We identified optimal conditions for inducing in-vitro IgA production by purified blood naive B cells using IL-10 and soluble CD40L. We show that soluble CD40L consistently induces the phosphorylation of nuclear factor (NF)-kappa B p65 but not of STAT3, while IL-10 induces the phosphorylation of STAT3 but not of NF-kappa B p65. Interestingly, while soluble CD40L and IL-10 were synergistic in driving the terminal maturation of B cells into IgA-producing plasma cells, they did not co-operate earlier in the pathway with regard to the transcription factors NF-kappa B p65 or STAT3. Blocking either NF-kappa B p65 or STAT3 profoundly altered the production of IgA and mRNA for activation-induced cytidine deaminase (AID), an enzyme strictly necessary for Ig heavy chain recombination. Finally, the STAT3 pathway was directly activated by IL-10, while IL-6, the main cytokine otherwise known for activating the STAT3 pathway, did not appear to be involved in IL-10-induced-STAT3 activation. Our results suggest that STAT3 and NF-kappa B pathways co-operate in IgA production, with soluble CD40L rapidly activating the NF-kappa B pathway, probably rendering STAT3 probably more reactive to IL-10 signalling. This novel role for STAT3 in B cell development reveals a potential therapeutic or vaccine target for eliciting IgA humoral responses at mucosal interfaces.

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