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B细胞受体串扰:暴露于脂多糖会诱导B细胞受体诱导的ERK磷酸化和NF-κB激活的替代途径。

B cell receptor cross-talk: exposure to lipopolysaccharide induces an alternate pathway for B cell receptor-induced ERK phosphorylation and NF-kappa B activation.

作者信息

Dye John R, Palvanov Arkadiy, Guo Benchang, Rothstein Thomas L

机构信息

Department of Pathology, Boston University School of Medicine, Boston, MA 02118, USA.

出版信息

J Immunol. 2007 Jul 1;179(1):229-35. doi: 10.4049/jimmunol.179.1.229.

Abstract

BCR signaling in naive B cells depends on the function of signalosome mediators; however, prior engagement of CD40 or of IL-4R produces an alternate signaling pathway in which Bruton's tyrosine kinase, PI3K, phospholipase Cgamma2, and protein kinase Cbeta are no longer required for BCR-induced downstream events. To explore the range of mediators capable of producing such an alternate pathway for BCR signaling, we examined the TLR4 agonist, LPS. B cell treatment with LPS at relatively low doses altered subsequent BCR signaling such that ERK phosphorylation and NF-kappaB activation occurred in a PI3K-independent manner. This effect of LPS extended to MEK phosphorylation and IkappaBalpha degradation, and it developed slowly over a period of 16-24 h. The involvement of TLRs is suggested by similar effects observed with a structurally distinct TLR agonist, PAM3CSK4 and by the need for MyD88 for induction of alternate BCR signaling by LPS. Thus, LPS-mediated TLR engagement produces an alternate pathway for BCR-triggered signal propagation that differs from the classical, signalosome-dependent pathway.

摘要

初始B细胞中的BCR信号传导依赖于信号体介质的功能;然而,CD40或IL-4R的预先激活会产生一条替代信号通路,在该通路中,布鲁顿酪氨酸激酶、PI3K、磷脂酶Cγ2和蛋白激酶Cβ不再是BCR诱导的下游事件所必需的。为了探索能够产生这种BCR信号传导替代通路的介质范围,我们研究了TLR4激动剂LPS。用相对低剂量的LPS处理B细胞会改变随后的BCR信号传导,使得ERK磷酸化和NF-κB激活以PI3K非依赖的方式发生。LPS的这种作用扩展到MEK磷酸化和IκBα降解,并且在16 - 24小时的时间段内缓慢发展。结构上不同的TLR激动剂PAM3CSK4观察到的类似效应以及LPS诱导替代BCR信号传导需要MyD88表明了TLR的参与。因此,LPS介导的TLR激活产生了一条与经典的、信号体依赖通路不同的BCR触发信号传播替代通路。

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