首页> 美国卫生研究院文献>Clinical and Experimental Immunology >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
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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

机译:核因子-κBp65与信号转导和转录激活因子3之间的复合物是诱导CD40L加上白介素10处理的人血B细胞中激活诱导的胞苷脱氨酶表达和免疫球蛋白A产生的关键因素

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摘要

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)-κB p65 but not of STAT3, while IL-10 induces the phosphorylation of STAT3 but not of NF-κB 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-κB p65 or STAT3. Blocking either NF-κB 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-κB pathways co-operate in IgA production, with soluble CD40L rapidly activating the NF-κB 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.
机译:信号转导和转录激活因子3(STAT3)转录因子途径在许多生物学现象中起着重要作用。 STAT3转录由细胞因子相关信号触发。在这里,我们使用分离的人类B细胞来分析STAT3在白介素(IL)-10诱导的终末B细胞分化和免疫球蛋白(Ig)A生产中的作用,作为IL-10信号的特征性读数。我们确定了使用IL-10和可溶性CD40L通过纯化的纯血B细胞诱导体外IgA产生的最佳条件。我们显示,可溶性CD40L始终诱导核因子(NF)-κBp65的磷酸化,但不诱导STAT3的磷酸化,而IL-10诱导STAT3磷酸化,但不诱导NF-κBp65的磷酸化。有趣的是,尽管可溶性CD40L和IL-10在驱动B细胞进入生成IgA的浆细胞的最终成熟中具有协同作用,但它们在转录因子NF-κBp65或STAT3的途径中并未协同作用。阻断NF-κBp65或STAT3可以显着改变激活诱导的胞苷脱氨酶(AID)的IgA和mRNA的生成,胞苷脱氨酶是Ig重链重组必不可少的酶。最终,STAT3途径被IL-10直接激活,而IL-6(其他已知激活STAT3途径的主要细胞因子)似乎不参与IL-10诱导的STAT3激活。我们的结果表明,STAT3和NF-κB通路在IgA产生中协同作用,可溶性CD40L迅速激活NF-κB通路,可能使STAT3可能对IL-10信号更敏感。 STAT3在B细胞发育中的这种新作用揭示了在黏膜界面引发IgA体液应答的潜在治疗或疫苗靶标。

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