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Carabin deficiency in B cells increases BCR-TLR9 costimulation-induced autoimmunity

机译:B细胞中的碳水化合物缺乏会增加BCR-TLR9共刺激诱导的自身免疫

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摘要

The mechanisms behind flares of human autoimmune diseases in general, and of systemic lupus in particular, are poorly understood. The present scenario proposes that predisposing gene defects favour clinical flares under the influence of external stimuli. Here, we show that Carabin is low in B cells of (NZB × NZW) F1 mice (murine SLE model) long before the disease onset, and is low in B cells of lupus patients during the inactive phases of the disease. Using knock-out and B-cell-conditional knock-out murine models, we identify Carabin as a new negative regulator of B-cell function, whose deficiency in B cells speeds up early B-cell responses and makes the mice more susceptible to anti-dsDNA production and renal lupus flare after stimulation with a Toll-like Receptor 9 agonist, CpG-DNA. Finally, in vitro analysis of NFκB activation and Erk phosphorylation in TLR9- and B-cell receptor (BCR)-stimulated Carabin-deficient B cells strongly suggests how the internal defect synergizes with the external stimulus and proposes Carabin as a natural inhibitor of the potentially dangerous crosstalk between BCR and TLR9 pathways in self-reactive B cells.
机译:一般而言,人类自身免疫性疾病(尤其是系统性红斑狼疮)爆发的机制尚不清楚。本方案提出,在外部刺激的影响下,易感基因缺陷有利于临床耀斑。在这里,我们显示Carabin在(NZB×NZW)F1小鼠(鼠SLE模型)的B细胞中很低,在疾病发作之前很久,而在疾病的非活动期中在狼疮患者的B细胞中却很低。使用敲除和B细胞条件敲除小鼠模型,我们确定Carabin是B细胞功能的新型负调节剂,其B细胞缺乏会加速早期B细胞反应,并使小鼠更容易受到抗用Toll样受体9激动剂CpG-DNA刺激后,β-dsDNA产生和肾狼疮发作。最后,在TLR9和B细胞受体(BCR)刺激的缺乏Carabin的B细胞中对NFκB活化和Erk磷酸化进行的体外分析有力地表明了内部缺陷如何与外部刺激协同作用,并提出Carabin是潜在潜在抑制剂的天然抑制剂自我反应性B细胞中BCR和TLR9途径之间存在危险的串扰。

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