首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Transcription factor EBf1 regulates differentiation stage-specific signaling, proliferation, and survival of B cells
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Transcription factor EBf1 regulates differentiation stage-specific signaling, proliferation, and survival of B cells

机译:转录因子EBf1调节B细胞分化阶段的信号传导,增殖和存活

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摘要

The transcription factor Ebf1 is an important determinant of early B lymphopoiesis. To gain insight into the functions of Ebf1 at distinct stages of differentiation, we conditionally inactivated Ebf1. We found that Ebf1 is required for the proliferation, survival, and signaling of pro-B cells and peripheral B-cell subsets, including B1 cells and marginal zone B cells. The proliferation defect of Ebf1-deficient pro-B cells and the impaired expression of multiple cell cycle regulators are overcome by transformation with v-Abl. The survival defect of transformed Ebf1 fl/fl pro-B cells can be rescued by the forced expression of the Ebf1 targets c-Myb or Bcl-x L. In mature B cells, Ebf1 deficiency interferes with signaling via the B-cell-activating factor receptor (BAFF-R)- and B-cell receptor (BCR)-dependent Akt pathways. Moreover, Ebf1 is required for germinal center formation and class switch recombination. Genome-wide analyses of Ebf1-mediated gene expression and chromatin binding indicate that Ebf1 regulates both common and distinct sets of genes in early and late stage B cells. By regulating important components of transcription factor and signaling networks, Ebf1 appears to be involved in the coordination of cell proliferation, survival, and differentiation at multiple stages of B lymphopoiesis.
机译:转录因子Ebf1是早期B淋巴细胞生成的重要决定因素。为了深入了解Ebf1在分化的不同阶段的功能,我们有条件地使Ebf1失活。我们发现,Ebf1是pro-B细胞和周围B细胞亚群(包括B1细胞和边缘区B细胞)的增殖,存活和信号传导所必需的。缺乏Ebf1的pro-B细胞的增殖缺陷和多个细胞周期调节因子的表达受损可通过v-Abl转化来克服。可以通过强制表达Ebf1目标c-Myb或Bcl-x L来挽救转化的Ebf1 fl / fl pro-B细胞的生存缺陷。在成熟的B细胞中,Ebf1缺乏症会通过激活B细胞来干扰信号传导因子受体(BAFF-R)和B细胞受体(BCR)依赖的Akt途径。此外,Ebf1是生发中心形成和类开关重组所必需的。 Ebf1介导的基因表达和染色质结合的全基因组分析表明,Ebf1调节早期和晚期B细胞中共同的和不同的基因集。通过调节转录因子和信号网络的重要组成部分,Ebf1似乎参与了B淋巴细胞生成多个阶段的细胞增殖,存活和分化的协调。

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