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Transcription factors of the alternative NF-κB pathway are required for germinal center B-cell development

机译:生殖中心B细胞发育需要替代NF-κB途径的转录因子

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摘要

The NF-κB signaling cascade relays external signals essential for B-cell growth and survival. This cascade is frequently hijacked by cancers that arise from the malignant transformation of germinal center (GC) B cells, underscoring the importance of deciphering the function of NF-κB in these cells. The NF-κB signaling cascade is comprised of two branches, the canonical and alternative NF-κB pathways, mediated by distinct transcription factors. The expression and function of the transcription factors of the alternative pathway, RELB and NF-κB2, in late B-cell development is incompletely understood. Using conditional deletion of relb and nfkb2 in GC B cells, we here report that ablation of both RELB and NF-κB2, but not of the single transcription factors, resulted in the collapse of established GCs. RELB/NF-κB2 deficiency in GC B cells was associated with impaired cell-cycle entry and reduced expression of the cell-surface receptor inducible T-cell costimulator ligand that promotes optimal interactions between B and T cells. Analysis of human tonsillar tissue revealed that plasma cells and their precursors in the GC expressed high levels of NF-κB2 relative to surrounding lymphocytes. Accordingly, deletion of nfkb2 in murine GC B cells resulted in a dramatic reduction of antigen-specific antibody-secreting cells, whereas deletion of relb had no effect. These results demonstrate that the transcription factors of the alternative NF-κB pathway control distinct stages of late B-cell development, which may have implications for B-cell malignancies that aberrantly activate this pathway.
机译:NF-κB信号级联传递了B细胞生长和存活所必需的外部信号。这种级联反应经常被生发中心(GC)B细胞恶性转化引起的癌症所劫持,这突显了解密这些细胞中NF-κB功能的重要性。 NF-κB信号级联由两个分支组成,即典型的和替代的NF-κB途径,由不同的转录因子介导。在晚期B细胞发育中,替代途径的转录因子RELB和NF-κB2的表达和功能尚不完全清楚。使用条件性删除GC B细胞中的relb和nfkb2,我们在此报告,切除RELB和NF-κB2,但不去除单个转录因子,会导致已建立的GC崩溃。 GC B细胞中的RELB /NF-κB2缺乏与细胞周期进入受损和细胞表面受体诱导性T细胞共刺激配体的表达降低有关,后者促进B细胞与T细胞之间的最佳相互作用。对人扁桃体组织的分析显示,相对于周围的淋巴细胞,GC中的浆细胞及其前体表达高水平的NF-κB2。因此,鼠GC B细胞中nfkb2的缺失导致抗原特异性抗体分泌细胞的急剧减少,而relb的缺失则没有影响。这些结果表明,替代性NF-κB途径的转录因子控制晚期B细胞发育的不同阶段,这可能与异常激活该途径的B细胞恶性肿瘤有关。

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