首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Programming of marginal zone B-cell fate by basic Kruppel-like factor (BKLF/KLF3).
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Programming of marginal zone B-cell fate by basic Kruppel-like factor (BKLF/KLF3).

机译:通过基本的Kruppel类因子(BKLF / KLF3)对边缘区B细胞的命运进行编程。

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摘要

Splenic marginal zone (MZ) B cells are a lineage distinct from follicular and peritoneal B1 B cells. They are located next to the marginal sinus where blood is released. Here they pick up antigens and shuttle the load onto follicular dendritic cells inside the follicle. On activation, MZ B cells rapidly differentiate into plasmablasts secreting antibodies, thereby mediating humoral immune responses against blood-borne type 2 T-independent antigens. As Kruppel-like factors are implicated in cell differentiation/function in various tissues, we studied the function of basic Kruppel-like factor (BKLF/KLF3) in B cells. Whereas B-cell development in the bone marrow of KLF3-transgenic mice was unaffected, MZ B-cell numbers in spleen were increased considerably. As revealed in chimeric mice, this occurred cell autonomously, increasing both MZ and peritoneal B1 B-cell subsets. Comparing KLF3-transgenic and nontransgenic follicular B cells by RNA-microarray revealed that KLF3 regulates a subset of genes that was similarly up-regulated/down-regulated on normal MZ B-cell differentiation. Indeed, KLF3 expression overcame the lack of MZ B cells caused by different genetic alterations, such as CD19-deficiency or blockade of B-cell activating factor-receptor signaling, indicating that KLF3 may complement alternative nuclear factor-kappaB signaling. Thus, KLF3 is a driving force toward MZ B-cell maturation.
机译:脾边缘区(MZ)B细胞是不同于滤泡和腹膜B1 B细胞的谱系。它们位于血液释放的边缘窦旁。在这里,他们拾取抗原并将负载穿梭到卵泡内部的卵泡树突状细胞上。激活后,MZ B细胞迅速分化为成浆细胞,分泌抗体,从而介导针对血源性2型T依赖性抗原的体液免疫反应。由于Kruppel样因子与各种组织的细胞分化/功能有关,因此我们研究了B细胞中基本Kruppel样因子(BKLF / KLF3)的功能。尽管KLF3转基因小鼠骨髓中的B细胞发育不受影响,但脾脏中的MZ B细胞数量却大大增加。正如在嵌合小鼠中揭示的那样,这是自主发生的细胞,增加了MZ和腹膜B1 B细胞亚群。通过RNA微阵列比较KLF3转基因和非转基因滤泡B细胞显示,KLF3调节基因的一个子集,该子集在正常MZ B细胞分化时同样上调/下调。实际上,KLF3的表达克服了由不同的遗传改变(例如CD19缺陷或B细胞活化因子受体信号传导的阻断)引起的MZ B细胞的缺乏,这表明KLF3可以补充其他核因子kappaB信号传导。因此,KLF3是朝着MZ B细胞成熟的驱动力。

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