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首页> 外文期刊>The journal of immunology >B Cell Receptor (BCR) Cross-Talk: CD40 Engagement Creates an Alternate Pathway for BCR Signaling That Activates IκB Kinase/IκBα/NF-κB without the Need for PI3K and Phospholipase Cγ
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B Cell Receptor (BCR) Cross-Talk: CD40 Engagement Creates an Alternate Pathway for BCR Signaling That Activates IκB Kinase/IκBα/NF-κB without the Need for PI3K and Phospholipase Cγ

机译:B细胞受体(BCR)交叉对话:CD40参与为BCR信号传导创建了一条替代途径,该途径可以激活IκB激酶/IκBα/NF-κB,而无需PI3K和磷脂酶Cγ

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摘要

BCR signaling is propagated by a series of intermediaries and eventuates in NF-κB activation, among other outcomes. Interruption of several mediators that constitute the signalosome, such as PI3K and phospholipase Cγ2, completely blocks BCR signaling for NF-κB. We show here that this accepted, conventional paradigm is, in fact, limited to naive B cells. CD40L treatment reprograms normal B cells such that a novel, alternate pathway for BCR signaling is created. Through this alternate pathway BCR triggering induces nuclear NF-κB without the need for PI3K or for phospholipase Cγ2. Induction of NF-κB via the alternate pathway is accompanied by IκB kinase β (IKKβ) phosphorylation, IκBα phosphorylation, and IκBα degradation, and inhibition of IKKβ blocked IκBα degradation. Several key events in the conventional pathway, including early protein tyrosine phosphorylation, were unimpeded by generation of the alternate pathway which appears to operate in parallel, rather than in competition, with classical BCR signaling. These results demonstrate cross-talk between CD40 and BCR, such that the requirements for BCR signaling are altered by prior B cell exposure to CD40L. The alternate BCR signaling pathway bypasses multiple signalosome elements and terminates in IKKβ activation.
机译:BCR信号通过一系列中介传播,并最终导致NF-κB激活。构成信号体的几种介体(如PI3K和磷脂酶Cγ2)的中断,完全阻断了NF-κB的BCR信号传导。我们在这里表明,这种公认的常规范例实际上仅限于幼稚B细胞。 CD40L处理可对正常B细胞​​进行重新编程,从而创建BCR信号传导的新途径。通过这种替代途径,BCR触发可诱导核NF-κB,而无需PI3K或磷脂酶Cγ2。通过替代途径诱导NF-κB伴随着IκB激酶β(IKKβ)磷酸化,IκBα磷酸化和IκBα降解,而抑制IKKβ则阻止了IκBα降解。常规途径中的几个关键事件,包括早期蛋白质酪氨酸磷酸化,并未受到替代途径的产生的阻碍,该途径似乎与经典BCR信号传导并行而不是竞争。这些结果证明了CD40和BCR之间的串扰,从而通过先前的B细胞暴露于CD40L改变了BCR信号转导的要求。替代的BCR信号传导途径绕过多个信号体元件,并终止IKKβ激活。

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