首页> 外文期刊>The Journal of biological chemistry >CCAAT/Enhancer-binding Protein β Inhibits Proliferation in Monocytic Cells by Affecting the Retinoblastoma Protein/E2F/Cyclin E Pathway but Is Not Directly Required for Macrophage Morphology
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CCAAT/Enhancer-binding Protein β Inhibits Proliferation in Monocytic Cells by Affecting the Retinoblastoma Protein/E2F/Cyclin E Pathway but Is Not Directly Required for Macrophage Morphology

机译:CCAAT / Enhancer结合蛋白β通过影响视网膜母细胞瘤蛋白/ e2F / cyclin E途径来抑制单核细胞中的增殖,但不是直接对巨噬细胞形态学所需的

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Monocytic differentiation is orchestrated by complex networks that are not fully understood. This study further elucidates the involvement of transcription factor CCAAT/enhancer-binding protein β (C/EBPβ). Initially, we demonstrated a marked increase in nuclear C/EBPβ-liver-enriched activating protein* (LAP*)/liver-enriched activating protein (LAP) levels and LAP/liver-enriched inhibiting protein (LIP) ratios in phorbol 12-myristate 13-acetate (PMA)-treated differentiating THP-1 premonocytic cells accompanied by reduced proliferation. To directly study C/EBPβ effects on monocytic cells, we generated novel THP-1-derived (low endogenous C/EBPβ) cell lines stably overexpressing C/EBPβ isoforms. Most importantly, cells predominantly overexpressing LAP* (C/EBPβ-long), but not those overexpressing LIP (C/EBPβ-short), exhibited a reduced proliferation, with no effect on morphology. PMA-induced inhibition of proliferation was attenuated in C/EBPβ-short cells. In C/EBPβWT macrophage-like cells (high endogenous C/EBPβ), we measured a reduced proliferation/cycling index compared with C/EBPβKO. The typical macrophage morphology was only observed in C/EBPβWT, whereas C/EBPβKO stayed round. C/EBPα did not compensate for C/EBPβ effects on proliferation/morphology. Serum reduction, an independent approach known to inhibit proliferation, induced macrophage morphology in C/EBPβKO macrophage-like cells but not THP-1. In PMA-treated THP-1 and C/EBPβ-long cells, a reduced phosphorylation of cell cycle repressor retinoblastoma was found. In addition, C/EBPβ-long cells showed reduced c-Myc expression accompanied by increased CDK inhibitor p27 and reduced cyclin D1 levels. Finally, C/EBPβ-long and C/EBPβWT cells exhibited low E2F1 and cyclin E levels, and C/EBPβ overexpression was found to inhibit cyclin E1 promoter-dependent transcription. Our results suggest that C/EBPβ reduces monocytic proliferation by affecting the retinoblastoma/E2F/cyclin E pathway and that it may contribute to, but is not directly required for, macrophage morphology. Inhibition of proliferation by C/EBPβ may be important for coordinated monocytic differentiation.
机译:单核细胞分化由不完全理解的复杂网络策划。该研究进一步阐明了转录因子CCAAT /增强子结合蛋白β(C /EBPβ)的累积。最初,我们证明了核C /EBPβ-肝富集的活化蛋白*(液乙烯*)/肝富集的活化蛋白(LAP)水平和LAP /肝富集的抑制蛋白(LIP)比在Phorbol 12-Myristate中的标记增加13-乙酸盐(PMA) - 分化的分化THP-1预纯细胞伴有增殖减少。直接研究单核细胞对单核细胞的C /EBPβ效应,我们产生了新的THP-1衍生(低内源性C /EBPβ)细胞系稳定过表达C /EBPβ同种型。最重要的是,主要过度表达LAP的细胞(C /EBPβ-LONG),但不是过表达唇(C /EBPβ-SHORT)的细胞表现出降低的增殖,对形态没有影响。 PMA诱导的增殖抑制在C /EBPβ - 短细胞中衰减。在C /EBPβWT巨噬细胞样细胞(高内源C /EBPβ)中,与C /EBPβKO相比,我们测量了降低的增殖/循环指数。典型的巨噬细胞形态仅在C /EBPβWT中观察,而C /EBPβKO留在圆形。 C /EBPα没有补偿关于增殖/形态的C /EBPβ效应。血清还原,一种抑制增殖的独立方法,诱导C /EBPβKO巨噬细胞样细胞中的巨噬细胞形态,但不是THP-1。在PMA处理的THP-1和C /EBPβ长电池中,发现了细胞周期阻遏物视网膜母细胞瘤的降低的磷酸化。此外,C /EBPβ-Long电池显示C-Myc表达的减少,伴随着增加的CDK抑制剂P27和细胞周期蛋白D1水平降低。最后,C /EBPβ-LONG和C /EBPβWT细胞表现出低E2F1和细胞周期蛋白E水平,并且发现C /EBPβ过表达抑制细胞周期蛋白E1启动子依赖性转录。我们的研究结果表明,C /EBPβ通过影响视网膜细胞瘤/ E2F / Cyclin E途径来减少单核细胞增殖,并且它可能有助于但不直接需要巨噬细胞形态。 C /EBPβ的抑制对于协调单核细胞分化可能是重要的。

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