首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Interaction of CCR4-NOT with EBF1 regulates gene-specific transcription and mRNA stability in B lymphopoiesis
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Interaction of CCR4-NOT with EBF1 regulates gene-specific transcription and mRNA stability in B lymphopoiesis

机译:CCR4-NOT与EBF1的相互作用调节B淋巴细胞生成中的基因特异性转录和mRNA稳定性

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摘要

Transcription factor EBF1 (early B-cell factor 1) regulates early B-cell differentiation by poising or activating lineage-specific genes and repressing genes associated with alternative cell fates. To identify proteins that regulate the diverse functions of EBF1, we used SILAC (stable isotope labeling by amino acids in cell culture)-based mass spectrometry of proteins associated with endogenous EBF1 in pro-B cells. This analysis identified most components of the multifunctional CCR4-NOT complex, which regulates transcription and mRNA degradation. CNOT3 interacts with EBF1, and we identified histidine 240 in EBF1 as a critical residue for this interaction. Complementation of Ebf1(-/-)progenitors with EBF1H240A revealed a partial block of pro-B-cell differentiation and altered expression of specific EBF1 target genes that show either reduced transcription or increased mRNA stability. Most deregulated EBF1 target genes show normal occupancy by EBF1H240A, but we also detected genes with altered occupancy, suggesting that the CCR4-NOT complex affects multiple activities of EBF1. Mice with conditional Cnot3 inactivation recapitulate the block of early B-cell differentiation, which we found to be associated with an impaired autoregulation of Ebf1 and reduced expression of pre-B-cell receptor components. Thus, the interaction of the CCR4-NOT complex with EBF1 diversifies the function of EBF1 in a context-dependent manner and may coordinate transcriptional and post-transcriptional gene regulation.
机译:转录因子EBF1(早期B细胞因子1)通过平衡或激活谱系特异性基因并抑制与其他细胞命运相关的基因来调节早期B细胞分化。为了鉴定调节EBF1多种功能的蛋白质,我们使用了基于SILAC(细胞培养物中氨基酸的稳定同位素标记)的与pro-B细胞内源性EBF1相关的蛋白质。该分析鉴定了多功能CCR4-NOT复合物的大部分成分,该复合物调节转录和mRNA降解。 CNOT3与EBF1相互作用,我们确定EBF1中的组氨酸240是这种相互作用的关键残基。 Ebf1(-/-)祖细胞与EBF1H240A的互补揭示了部分Pro B细胞分化和特定EBF1目标基因表达的改变,这些基因显示转录降低或mRNA稳定性增加。大多数被放松调节的EBF1目标基因显示EBF1H240A正常占有,但我们还检测到占有率发生改变的基因,这表明CCR4-NOT复合物影响EBF1的多种活性。有条件的Cnot3失活的小鼠概括了早期B细胞分化的阻滞,我们发现这与Ebf1的自动调节受损和前B细胞受体成分表达降低有关。因此,CCR4-NOT复合物与EBF1的相互作用以上下文相关的方式使EBF1的功能多样化,并可能协调转录和转录后基因的调控。

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