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The role of cell stress signalling in the induction of gamma-globin gene expression.

机译:细胞应激信号在诱导γ-珠蛋白基因表达中的作用。

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摘要

Increased fetal hemoglobin (HbF) expression is beneficial for beta-hemoglobinopathy patients; however, most inducing agents do not possess the ideal combination of efficacy, safety and availability. Better understanding the mechanisms involved in gamma-globin gene induction is critical for designing improved therapies, as no complete mechanism for any inducing agent has been identified. Given the cytotoxic nature of most known inducers, we hypothesized that gamma-globin is a cell stress response gene, and that induction occurs via activation of cell stress signalling pathways. We tested this hypothesis by investigating the ability of physical stresses including heat-shock (HS), UV, X-irradiation and osmotic shock to increase gamma-globin gene expression in erythroid cells. Experiments in K562 and KU812 cells showed that each of these stresses increased steady-state gamma-globin mRNA levels, but only after 3-5 days of treatments. HS and UV also increased gamma-globin mRNA and HbF levels in differentiating primary human erythroid cells. Mechanistic studies showed that HS affects gamma-globin mRNA at multiple levels, including nascent transcription and transcript stability, and that induction is dependent on neither the master regulator of the canonical HS response, HSF1, nor p38 MAPK. Past literature reports and findings from our laboratory prompted us to initially place p38 at the centre of our model; therefore we also investigated the effect of p38 inhibitor SB203580 (SB) on gamma-globin gene expression. SB dose-dependently decreases basal gamma-globin mRNA levels; however, genetic modulation of p38 did not affect basal or HS-induced gamma-globin gene expression, but did attenuate sodium butyrate (NaB)-mediated increases. In comparing the effects of SB to an alternative p38 inhibitor, BIRB0796, we identified a role for SB in gamma-globin gene regulation that is partially independent of its canonical function as a p38 inhibitor. Preliminary data suggests that SB-mediated ERK activation may be involved in this gamma-globin suppression. Additionally, testing of a panel of inhibitors revealed a potential role for NFkappaB in stress-mediated gamma-globin gene induction and identified PI3K inhibitor LY294002 as a novel inducing agent. These findings suggest that cell stress signalling pathways play an important role in gamma-globin gene induction, and may provide novel targets for the pharmacologic induction of fetal hemoglobin.
机译:胎儿血红蛋白(HbF)表达增加对β-血红蛋白病患者有益;然而,大多数诱导剂并不具有功效,安全性和可用性的理想组合。更好地了解与γ-珠蛋白基因诱导有关的机制对于设计改进的疗法至关重要,因为尚未确定任何诱导剂的完整机制。鉴于大多数已知诱导物的细胞毒性性质,我们假设γ-珠蛋白是一种细胞应激反应基因,并且该诱导通过激活细胞应激信号通路而发生。我们通过研究包括热休克(HS),紫外线,X射线辐射和渗透压休克在内的物理应激增加红系细胞中γ-珠蛋白基因表达的能力,检验了这一假设。在K562和KU812细胞中进行的实验表明,这些压力均会增加稳态γ-珠蛋白mRNA水平,但仅在处理3-5天后才会增加。 HS和UV在分化的原代人红系细胞中也增加了γ-球蛋白mRNA和HbF的水平。机理研究表明,HS可以在多个水平上影响γ-珠蛋白的mRNA表达,包括新生转录和转录本的稳定性,并且诱导作用既不依赖于经典HS反应的主调节剂,HSF1,也不依赖于p38 MAPK。我们实验室过去的文献报道和发现促使我们最初将p38置于模型的中心。因此,我们还研究了p38抑制剂SB203580(SB)对γ-珠蛋白基因表达的影响。 SB剂量依赖性降低基础γ-珠蛋白mRNA水平;然而,p38的遗传调节不会影响基础或HS诱导的γ-球蛋白基因表达,但会减弱丁酸钠(NaB)介导的增加。在比较SB与替代p38抑制剂BIRB0796的作用时,我们确定了SB在γ-珠蛋白基因调控中的作用,该作用部分独立于其作为p38抑制剂的规范功能。初步数据表明,SB介导的ERK激活可能与这种γ-球蛋白抑制有关。此外,一组抑制剂的测试显示了NFkappaB在应激介导的γ-球蛋白基因诱导中的潜在作用,并确定了PI3K抑制剂LY294002是一种新型诱导剂。这些发现表明细胞应激信号通路在γ-珠蛋白基因的诱导中起重要作用,并可能为胎儿血红蛋白的药理学诱导提供新的靶点。

著录项

  • 作者

    Schaeffer, Emily K.;

  • 作者单位

    Dartmouth College.;

  • 授予单位 Dartmouth College.;
  • 学科 Biology Molecular.;Health Sciences Pharmacology.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 212 p.
  • 总页数 212
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:54

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