AI Article Synopsis

  • IL-10 is an immune suppressive cytokine critical for B cell function, influencing their regulatory roles in various health and disease situations.
  • Research examined how different stimuli affect IL-10 production in B cells, revealing that infections or other danger signals rapidly trigger IL-10 release, while specific B cell subsets respond to delayed signals.
  • The study found that gene expression for IL-10 in response to certain stimuli relies on the p38 MAP kinase pathway, unlike the activation of IL-10 competence in CD40-stimulated B cells, which does not depend on major MAP kinase pathways.

Article Abstract

IL-10 is an immune suppressive cytokine with pleiotropic effects on B cell biology. IL-10 production has a pivotal role for the regulatory suppressive functions that B cells exert in many physiological and pathological settings. Several exogenous stimuli and endogenous immune mediators can trigger IL-10-producing B cell maturation. To clarify and gain a better insight into the mechanisms of IL-10 production by B cells, we first compared the effects of LPS, CpG, agonistic CD40 mAb and BAFF on IL-10 production, and then we investigated the signal transduction mechanisms responsible for these responses. While infectious/danger stimuli determine the rapid production and release of IL-10 by B cells, a limited subset of CD40-poised, IL-10-competent B cells produce IL-10 in response to a later antigenic or infectious signal. Although BAFF is able to induce a similar subset of IL-10-competent B cells, these cells do not similarly respond to the same antigenic or infectious signals. Importantly, by using specific inhibitors of the MAP kinase pathways, we found that while il-10 gene expression triggered by the TLR agonists LPS and CpG is strongly dependent on p38 activity, the induction of IL-10 competence in CD40-activated B cells does not depend on ERK1/2, p38 or JNK pathways.

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Source
http://dx.doi.org/10.1016/j.molimm.2014.05.018DOI Listing

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