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PU.1 phosphorylation correlates with hydroquinone-induced alterations in myeloid differentiation and cytokine-dependent clonogenic response in human CD34+ hematopoietic progenitor cells

机译:PU.1磷酸化与对苯二酚诱导的人CD34 + 造血祖细胞髓系分化和细胞因子依赖性克隆形成反应的改变有关。

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摘要

The transcriptional regulatory factor PU.1 is important for the regulation of a diverse group of hematopoietic and myeloid genes. Posttranslational phosphorylation of PU.1 has been demonstrated in the regulation of a variety of promoters in normal cells. In leukemia cells, differing patterns of PU.1 phosphorylation have been described among acute myelogenous leukemia (AML) subtypes. Therefore, we hypothesized that modulation of PU.1-dependent gene expression might be a molecular mediator of alterations in myeloid cell growth and differentiation that have been demonstrated to be early events in benzene-induced leukemogenesis. We found that freshly isolated human CD34+ hematopoietic progenitor cells (HPC) exhibit multiple PU.1-DNA binding species that represent PU.1 proteins in varying degrees of phosphorylation states as determined by phosphatase treatment in combination with electrophoretic mobility shift assay (EMSA). Maturation of granulocyte and monocyte lineages is also accompanied by distinct changes in PU.1-DNA binding patterns. Experiments reveal that increasing doses of the benzene metabolite, hydroquinone (HQ) induce a time-and dose-dependent alteration in the pattern of PU.1-DNA binding in cultured human CD34+ cells, corresponding to hyperphosphorylation of the PU.1 protein. HQ-induced alterations in PU.1-DNA binding are concomitant with a sustained immature CD34+ phenotype and cytokine-dependent enhanced clonogenic activity in cultured human HPC. These results suggest that HQ induces a dysregulation in the external signals modulating PU.1 protein phosphorylation and this dysregulation may be an early event in the generation of benzene-induced AML.
机译:转录调节因子PU.1对于调节多种造血和髓样基因很重要。 PU.1的翻译后磷酸化已在正常细胞中多种启动子的调控中得到证明。在白血病细胞中,急性髓性白血病(AML)亚型中已经描述了PU.1磷酸化的不同模式。因此,我们假设调节PU.1依赖的基因表达可能是髓样细胞生长和分化改变的分子介质,已经证明是苯诱导的白血病发生的早期事件。我们发现新鲜分离的人CD34 + 造血祖细胞(HPC)表现出多种PU.1-DNA结合物种,这些物种代表通过磷酸酶处理结合电泳迁移率迁移分析确定的不同磷酸化状态的PU.1蛋白(EMSA)。粒细胞和单核细胞谱系的成熟还伴随着PU.1-DNA结合模式的明显变化。实验表明,增加剂量的苯代谢物对苯二酚(HQ)会诱导人CD34 + sup细胞中PU.1-DNA结合模式的时间和剂量依赖性改变,这与PU的过度磷酸化相对应。 1种蛋白质。 HQ诱导的PU.1-DNA结合改变与持续的未成熟CD34 +表型和细胞因子依赖性增强的人类HPC克隆活性有关。这些结果表明,总部诱导调节PU.1蛋白磷酸化的外部信号中的失调,这种失调可能是苯诱导的AML产生的早期事件。

著录项

  • 来源
    《Cell Biology and Toxicology》 |2006年第4期|229-241|共13页
  • 作者单位

    Molecular Toxicology and Environmental Health Sciences Program School of Pharmacy USA;

    Molecular Toxicology and Environmental Health Sciences Program School of Pharmacy USA;

    Molecular Toxicology and Environmental Health Sciences Program School of Pharmacy USA;

    Molecular Toxicology and Environmental Health Sciences Program School of Pharmacy USA;

    Molecular Toxicology and Environmental Health Sciences Program School of Pharmacy USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CD34+; hematopoietic; human; hydroquinone; phosphorylation; PU.1;

    机译:CD34 +;造血细胞;人;对苯二酚;磷酸化;PU.1;

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