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Notch Signaling Enhances Survival and Alters Differentiation of 32D Myeloblasts

机译:Notch信号增强了32D成髓细胞的存活并改变了分化

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The Notch transmembrane receptors play important roles in precursor survival and cell fate specification during hematopoiesis. To investigate the function of Notch and the signaling events activated by Notch in myeloid development, we expressed truncated forms of Notch1 or Notch2 proteins that either can or cannot activate the core binding factor 1 (CBF1) in 32D (clone 3) myeloblasts. 32D cells proliferate as blasts in the presence of the cytokines, GM-CSF or IL-3, but they initiate differentiation and undergo granulopoiesis in the presence of granulocyte CSF (G-CSF). 32D cells expressing constitutively active forms of Notch1 or Notch2 proteins that signal through the CBF1 pathway maintained significantly higher numbers of viable cells and exhibited less cell death during G-CSF induction compared with controls. They also displayed enhanced entry into granulopoiesis, and inhibited postmitotic terminal differentiation. In contrast, Notch1 constructs that either lacked sequences necessary for CBF1 binding or that failed to localize to the nucleus had little effect. Elevated numbers of viable cells during G-CSF treatment were also observed in 32D cells overexpressing the basic helix-loop-helix protein (bHLH), HES1, consistent with activation of the CBF1 pathway. Taken together, our data suggest that Notch signaling enhances 32D cell survival, promotes entry into granulopoiesis, and inhibits postmitotic differentiation through a CBF1-dependent pathway.
机译:Notch跨膜受体在造血过程中在前体存活和细胞命运规范中起重要作用。若要调查Notch的功能和Notch在髓样发育中激活的信号转导事件,我们表达了Notch1或Notch2蛋白的截短形式,它们可以或不能激活32D(克隆3)成纤维细胞中的核心结合因子1(CBF1)。 32D细胞在细胞因子,GM-CSF或IL-3存在下以胚细胞形式增殖,但在粒细胞CSF(G-CSF)存在下它们开始分化并经历粒细胞生成。与对照组相比,表达通过CBF1途径发出信号的Notch1或Notch2蛋白的组成型活性形式的32D细胞保持明显更高数量的活细胞,并且在G-CSF诱导过程中表现出更少的细胞死亡。他们还显示出增强的粒细胞生成能力,并抑制有丝分裂后的终末分化。相反,缺少CBF1结合所必需的序列或无法定位到核的Notch1构建体几乎没有作用。在过表达基本螺旋-环-螺旋蛋白(bHLH),HES1的32D细胞中,也观察到了G-CSF处理过程中活细胞数量的增加,这与CBF1途径的激活相一致。综上所述,我们的数据表明,Notch信号增强了32D细胞的存活率,促进了粒细胞生成,并通过CBF1依赖性途径抑制有丝分裂后的分化。

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