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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Role of TLR in B Cell Development: Signaling through TLR4 Promotes B Cell Maturation and Is Inhibited by TLR2.
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Role of TLR in B Cell Development: Signaling through TLR4 Promotes B Cell Maturation and Is Inhibited by TLR2.

机译:TLR在B细胞发育中的作用:通过TLR4发出的信号促进B细胞成熟并被TLR2抑制。

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摘要

The role of TLR4 in mature B cell activation is well characterized. However, little is known about TLR4 role in B cell development. Here, we analyzed the effects of TLR4 and TLR2 agonists on B cell development using an in vitro model of B cell maturation. Highly purified B220(+)IgM(-) B cell precursors from normal C57BL/6 mouse were cultured for 72 h, and B cell maturation in the presence of the TLR agonists was evaluated by expression of IgM, IgD, CD23, and AA4. The addition of LPS or lipid A resulted in a marked increase in the percentage of CD23(+) B cells, while Pam3Cys had no effect alone, but inhibited the increase of CD23(+) B cell population induced by lipid A or LPS. The TLR4-induced expression of CD23 is not accompanied by full activation of the lymphocyte, as suggested by the absence of activation Ag CD69. Experiments with TLR2-knockout mice confirmed that the inhibitory effects of Pam3Cys depend on the expression of TLR2. We studied the effects of TLR-agonists on early steps of B cell differentiation by analyzing IL-7 responsiveness and phenotype of early B cell precursors: we found that both lipid A and Pam3Cys impaired IL-7-dependent proliferation; however, while lipid A up-regulates B220 surface marker, consistent with a more mature phenotype of the IgM(-) precursors, Pam3Cys keeps the precursors on a more immature stage. Taken together, our results suggest that TLR4 signaling favors B lymphocyte maturation, whereas TLR2 arrests/retards that process, ascribing new roles for TLRs in B cell physiology.
机译:TLR4在成熟B细胞激活中的作用已得到很好的表征。然而,关于TLR4在B细胞发育中的作用知之甚少。在这里,我们使用B细胞成熟的体外模型分析了TLR4和TLR2激动剂对B细胞发育的影响。将来自正常C57BL / 6小鼠的高度纯化的B220(+)IgM(-)B细胞前体培养72小时,并通过IgM,IgD,CD23和AA4的表达评估在TLR激动剂存在下的B细胞成熟。 LPS或脂质A的添加导致CD23(+)B细胞百分比的显着增加,而Pam3Cys单独没有作用,但抑制了脂质A或LPS诱导的CD23(+)B细胞群体的增加。 TLR4诱导的CD23表达并不伴随淋巴细胞的完全活化,这是由于不存在活化Ag CD69所暗示的。用TLR2敲除小鼠进行的实验证实,Pam3Cys的抑制作用取决于TLR2的表达。通过分析早期B细胞前体的IL-7应答性和表型,我们研究了TLR激动剂对B细胞分化早期阶段的影响:我们发现脂质A和Pam3Cys均会损害IL-7依赖性增殖;而脂质A和Pam3Cys均受损。然而,虽然脂质A上调B220表面标志物,与IgM(-)前体的更成熟表型一致,但Pam3Cys使前体处于更不成熟的阶段。两者合计,我们的结果表明TLR4信号转导有利于B淋巴细胞的成熟,而TLR2阻滞/延迟该过程,这为TLRs在B细胞生理学中的新作用赋予了新的作用。

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