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首页> 外文期刊>The Journal of biological chemistry >Activation-induced Tumor Necrosis Factor Receptor-associated Factor 3 (Traf3) Alternative Splicing Controls the Noncanonical Nuclear Factor κB Pathway and Chemokine Expression in Human T Cells
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Activation-induced Tumor Necrosis Factor Receptor-associated Factor 3 (Traf3) Alternative Splicing Controls the Noncanonical Nuclear Factor κB Pathway and Chemokine Expression in Human T Cells

机译:活化诱导的肿瘤坏死因子受体相关因子3(TRAF3)替代剪接控制人T细胞中的非甘露出的核因子κB途径和趋化因子表达

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The noncanonical nuclear factor κB (ncNFκB) pathway regulates the expression of chemokines required for secondary lymphoid organ formation and thus plays a pivotal role in adaptive immunity. Whereas ncNFκB signaling has been well described in stromal cells and B cells, its role and regulation in T cells remain largely unexplored. ncNFκB activity critically depends on the upstream NFκB-inducing kinase (NIK). NIK expression is negatively regulated by the full-length isoform of TNF receptor-associated factor 3 (Traf3) as formation of a NIK-Traf3-Traf2 complex targets NIK for degradation. Here we show that T cell-specific and activation-dependent alternative splicing generates a Traf3 isoform lacking exon 8 (Traf3DE8) that, in contrast to the full-length protein, activates ncNFκB signaling. Traf3DE8 disrupts the NIK-Traf3-Traf2 complex and allows accumulation of NIK to initiate ncNFκB signaling in activated T cells. ncNFκB activity results in expression of several chemokines, among them B cell chemoattractant (CxCL13), both in a model T cell line and in primary human CD4+ T cells. Because CxCL13 plays an important role in B cell migration and activation, our data suggest an involvement and provide a mechanistic basis for Traf3 alternative splicing and ncNFκB activation in contributing to T cell-dependent adaptive immunity.
机译:非洲核因子κB(NCNFκB)途径调节次级淋巴器官形成所需的趋化因子,从而在适应性免疫中发挥枢轴作用。虽然NCNFκB信号传导在基质细胞和B细胞中已经很好地描述,但其在T细胞的作用和调节仍然很大程度上是未开发的。 NCNFκB活性重视依赖于上游NFκB诱导激酶(NIK)。 NIK表达由TNF受体相关因子3(TRAF3)的全长同种型负调节,作为形成NIK-TRAF3-TRAF2复合靶NIK以降解的形成。在这里,我们表明T细胞特异性和激活依赖性替代剪接产生缺乏外显子8(Traf3de8)的TRAF3同种型,与全长蛋白质相比,激活NCNFκB信号传导。 TRAF3DE8扰乱了NIK-TRAF3-TRAF2复合物,允许NIK累积在活性T细胞中启动NCNFκB信号。 NCNFκB活性导致几种趋化因子的表达,其中B细胞化学措施(CXCL13),无论是在模型T细胞系和一次人CD4 + T细胞中。因为CXCL13在B细胞迁移和激活中起重要作用,所以我们的数据表明了参与,并为TRAF3替代剪接和NCNFκB活化提供了一种机制基础,从而有助于T细胞依赖性的自适应免疫。

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