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Negative role of TAK1 in marginal zone B-cell development incidental to NF-kappa B noncanonical pathway activation

机译:TAK1在NF-κB非典型途径激活附带的边缘区B细胞发育中的负作用

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The transcription factor nuclear factor-kappa B (NF-kappa B) signaling pathway is crucial in B-cell physiology. One key molecule regulating this pathway is the serine/threonine kinase TAK1 (MAP3K7). TAK1 is responsible for positive feedback mechanisms in B-cell receptor signaling that serve as an NF-kappa B activation threshold. This study aimed to better understand the correlation between TAK1-mediated signaling and B-cell development and humoral immune responses. Here we showed that a B-cell conditional deletion of TAK1 using mb1-cre resulted in a dramatic elimination of the humoral immune response, consistent with the absence of the B-1 B-cell subset. When monitoring the self-reactive B-cell system (the immunoglobulin hen egg lysozyme/soluble hen egg lysozyme double-transgenic mouse model), we found that TAK1-deficient B cells exhibited an enhanced susceptibility to cell death that might explain the disappearance of the B1 subset. In contrast, these mice gained numerous marginal zone (MZ) B cells. We consequently examined the basal and B-cell receptor-induced activity of NF-kappa B2 that is reported to regulate MZ B-cell development, and demonstrated that the activity of NF-kappa B2 increased in TAK1-deficient B cells. Thus, our results present a novel in vivo function, the negative role of TAK1 in MZ B-cell development that is likely associated with NF-kappa B2 activation.
机译:转录因子核因子-κB(NF-kappa B)信号通路在B细胞生理中至关重要。调节该途径的一个关键分子是丝氨酸/苏氨酸激酶TAK1(MAP3K7)。 TAK1负责B细胞受体信号传导中的正反馈机制,该机制可作为NF-κB激活阈值。这项研究旨在更好地了解TAK1介导的信号与B细胞发育和体液免疫反应之间的相关性。在这里,我们显示使用mb1​​-cre的B细胞条件性TAK1缺失导致体液免疫反应的显着消除,这与B-1 B细胞亚群的缺失是一致的。监测自我反应性B细胞系统(免疫球蛋白鸡卵溶菌酶/可溶性鸡卵溶菌酶双转基因小鼠模型)时,我们发现TAK1缺陷型B细胞对细胞死亡的敏感性增强,这可能解释了TAK1的消失。 B1子集。相比之下,这些小鼠获得了许多边缘区(MZ)B细胞。因此,我们检查了据报道调节MZ B细胞发育的基础和B细胞受体诱导的NF-kappa B2的活性,并证明NF-kappa B2的活性在TAK1缺陷型B细胞中增加。因此,我们的结果提出了一种新的体内功能,即TAK1在MZ B细胞发育中的负作用,这可能与NF-κB2活化有关。

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