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IL-2 imprints human naive B cell fate towards plasma cell through ERK/ELK1-mediated BACH2 repression

机译:IL-2通过ERK / ELK1介导的BACH2抑制将人类幼稚B细胞的命运印在浆细胞上

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摘要

Plasma cell differentiation is a tightly regulated process that requires appropriate T cell helps to reach the induction threshold. To further understand mechanisms by which T cell inputs regulate B cell fate decision, we investigate the minimal IL-2 stimulation for triggering human plasma cell differentiation in vitro. Here we show that the timed repression of BACH2 through IL-2-mediated ERK/ELK1 signalling pathway directs plasma cell lineage commitment. Enforced BACH2 repression in activated B cells unlocks the plasma cell transcriptional program and induces their differentiation into immunoglobulin M-secreting cells. RNA-seq and ChIP-seq results further identify BACH2 target genes involved in this process. An active regulatory region within the BACH2 super-enhancer, under ELK1 control and differentially regulated upon B-cell activation and cellular divisions, helps integrate IL-2 signal. Our study thus provides insights into the temporal regulation of BACH2 and its targets for controlling the differentiation of human naive B cells.
机译:浆细胞分化是一个严格调控的过程,需要适当的T细胞帮助达到诱导阈值。为了进一步了解T细胞输入调节B细胞命运决定的机制,我们研究了体外触发人浆细胞分化的最小IL-2刺激。在这里,我们显示通过IL-2介导的ERK / ELK1信号通路的BACH2的定时抑制指导浆细胞谱系的承诺。在活化的B细胞中强制执行BACH2抑制作用可解锁浆细胞转录程序,并诱导其分化为分泌免疫球蛋白的M细胞。 RNA-seq和ChIP-seq结果进一步鉴定了该过程中涉及的BACH2靶基因。在ELK1的控制下,BACH2超级增强子中的一个活跃的调节区域,在B细胞活化和细胞分裂过程中受到不同的调节,有助于整合IL-2信号。因此,我们的研究为BACH2的时间调控及其控制人类幼稚B细胞分化的靶标提供了见识。

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