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A Complex Relationship between TRAF3 and Non-Canonical NF-κB2 Activation in B Lymphocytes

机译:B淋巴细胞中TRAF3与非典型NF-κB2激活之间的复杂关系

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摘要

The adaptor protein TRAF3 restrains B cell activating factor receptor (BAFFR) and CD40-mediated activation of the NF-κB2 pathway in B cells. Mice lacking TRAF3 specifically in B cells revealed the critical role of TRAF3 in restraining homeostatic B cell survival. Furthermore, loss-of-function mutations of the traf3 gene have been associated with human B cell malignancies, especially multiple myeloma (MM). It has been proposed that receptor-induced TRAF3 degradation leads to stabilization of the NF-κB inducing kinase (NIK), and subsequent NF-κB2 activation. However, it is unclear how receptor-mediated TRAF3 degradation or loss-of-function contributes to B cell-specific NF-κB2 activation. In the current study, we employed two complementary models to address this question. One utilized a mutant traf3 gene found in a human MM-derived cell line called LP1. The LP1 mutant TRAF3 protein lacks the TRAF-N and TRAF-C domains. Consistent with the paradigm described, expression of LP1 TRAF3 in B cells promoted higher basal levels of NF-κB2 activation compared to Wt TRAF3. However, LP1 did not associate with TRAF2, CD40, or BAFFR, and no LP1 degradation was observed following receptor engagement. Interestingly, LP1 showed enhanced NIK association. Thus, TRAF3 degradation becomes dispensable to activate NF-κB2 when it is unable to associate with TRAF2. In a second model, we examined several mutant forms of BAFFR that are unable to induce NF-κB2 activation in B cells. Signaling to B cells by each of these BAFFR mutants, however, induced levels of TRAF3 degradation similar to those induced by Wt BAFFR. Thus, in B cells, receptor-mediated TRAF3 degradation is not sufficient to promote NF-κB2 activation. We thus conclude that there is not a simple linear relationship in B lymphocytes between relative levels of cellular TRAF3, induced TRAF3 degradation, NIK activation, and NF-κB2 activation.
机译:衔接蛋白TRAF3抑制B细胞活化因子受体(BAFFR)和CD40介导的B细胞NF-κB2途径的活化。在B细胞中特异性缺乏TRAF3的小鼠揭示了TRAF3在抑制稳态B细胞存活中的关键作用。此外,traf3基因的功能丧失突变与人类B细胞恶性肿瘤有关,尤其是多发性骨髓瘤(MM)。已经提出,受体诱导的TRAF3降解导致NF-κB诱导激酶(NIK)的稳定和随后的NF-κB2活化。然而,尚不清楚受体介导的TRAF3降解或功能丧失如何促进B细胞特异性NF-κB2活化。在当前的研究中,我们采用了两个互补的模型来解决这个问题。一个利用了在人类MM衍生的细胞系LP1中发现的突变traf3基因。 LP1突变体TRAF3蛋白缺少TRAF-N和TRAF-C结构域。与上述范例一致,与Wt TRAF3相比,B细胞中LP1 TRAF3的表达促进了更高的基础水平的NF-κB2活化。但是,LP1不与TRAF2,CD40或BAFFR缔合,并且受体结合后未观察到LP1降解。有趣的是,LP1显示出增强的NIK关联。因此,当TRAF3降解不能与TRAF2结合时,就可以激活NF-κB2降解。在第二个模型中,我们检查了BAFFR的几种突变形式,这些突变形式无法诱导B细胞中的NF-κB2活化。但是,这些BAFFR突变体中的每一个向B细胞发出的信号诱导的TRAF3降解水平与Wt BAFFR诱导的水平相似。因此,在B细胞中,受体介导的TRAF3降解不足以促进NF-κB2活化。因此我们得出结论,在B淋巴细胞中,相对水平的细胞TRAF3,诱导的TRAF3降解,NIK激活和NF-κB2激活之间没有简单的线性关系。

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