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Phosphatome RNAi Screen Identifies Eyal as a Positive Regulator of Hedgehog Signal Transduction.

机译:磷酸酶RNAi筛选将Eyal鉴定为刺猬信号转导的正调节剂。

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摘要

The Hedgehog (Hh) signaling pathway is vital for vertebrate embryogenesis and aberrant activation of the pathway can cause tumorigenesis in humans. In this study, we used a phosphatome RNAi screen for regulators of Hh signaling to identify a member of the Eyes Absent protein family, Eya1, as a positive regulator of Hh signal transduction. Eya1 is both a phosphatase and transcriptional regulator. Eya family members have been implicated in tumor biology, and Eya1 is highly expressed in a particular subtype of medulloblastoma (MB). Here we show that RNAi-mediated knock-down of Eya1, as well as knock-down of its co-factor, Six1, blocks Hh signaling as assessed by induction of Hh response genes. Utilizing small molecule agonists, RNAi, and protein over-expression methods, we place the influence of Eya1 and Six1 within the Hh signaling pathway downstream of Smoothened (Smo) and at or above the level of Suppressor of Fused (Sufu). Interestingly, Eya1 appears to be specifically required for Hh-responsive gene activation mediated by Gli transcriptional activators but not for Hh-mediated transcriptional de-repression mediated by the inhibition of Gli transcriptional repressors. Furthermore, we find that Eya1 and Six1 regulate the expression of Neuropilin1 (Nrp1) and Neuropilin2 (Nrp2), known positive regulators of Hh signaling, providing a mechanism by which Eya1 and Six1 exert their effects.;Based on these data, we investigated a role of Eya1 in Hh signaling in vivo. We obtained Eya1-/- mice and focused our attention on the developing cerebellum, where Sonic Hedgehog (Shh) is a major factor promoting neural precursor proliferation. In the Eya1 -/- cerebellum, we find a striking reduction in neural precursor proliferation. In addition, we surveyed several other locations where Shh and/or Eya1 are known to be important for development. These include the embryonic otic vesicle, neural tube, and lung. In the developing inner ear we find Eya1-/- mice display reduced Hh signaling in vivo and a genetic interaction between Eya1 and Hh signaling. In lung tissue, Eya1-/- mice have reduced levels of Nrp expression. Together, these data further our understanding of the Hh signaling pathway and provide evidence for a role of Eya1 in Hh signal transduction.
机译:刺猬(Hh)信号通路对于脊椎动物胚胎发生至关重要,并且该通路的异常激活可能导致人类肿瘤发生。在这项研究中,我们使用了磷酸化RNAi筛选Hh信号的调节剂,以鉴定Eyes Absent蛋白家族Eya1的成员,作为Hh信号转导的阳性调节剂。 Eya1既是磷酸酶又是转录调节因子。 Eya家族成员已经牵涉到肿瘤生物学,并且Eya1在髓母细胞瘤(MB)的特定亚型中高度表达。在这里,我们显示RNAi介导的Eya1敲除及其辅助因子Six1的敲除可阻断Hh信号传导,通过诱导Hh反应基因进行评估。利用小分子激动剂,RNAi和蛋白质过表达方法,我们将Eya1和Six1的影响置于平滑化(Smo)下游Hh信号通路内以及融合抑制(Sufu)抑制因子水平以上。有趣的是,Eya1似乎是由Gli转录激活因子介导的Hh应答基因激活特别需要的,而不是由抑制Gli转录抑制因子介导的Hh介导的转录抑制。此外,我们发现Eya1和Six1调节Hh信号的已知正调节剂Neuropilin1(Nrp1)和Neuropilin2(Nrp2)的表达,提供了Eya1和Six1发挥作用的机制。 Eya1在体内Hh信号传导中的作用我们获得了Eya1-/-小鼠,并将注意力集中在小脑发育中,其中声波刺猬(Shh)是促进神经前体增殖的主要因素。在Eya1-/-小脑中,我们发现神经前体增殖显着降低。此外,我们还调查了Shh和/或Eya1对发展至关重要的其他几个地点。这些包括胚胎耳囊,神经管和肺。在发育中的内耳中,我们发现Eya1-/-小鼠在体内显示出降低的Hh信号传导以及Eya1和Hh信号传导之间的遗传相互作用。在肺组织中,Eya1-/-小鼠的Nrp表达水平降低。总之,这些数据进一步加深了我们对Hh信号通路的理解,并为Eya1在Hh信号转导中的作用提供了证据。

著录项

  • 作者

    Eisner, Adriana.;

  • 作者单位

    Harvard University.;

  • 授予单位 Harvard University.;
  • 学科 Molecular biology.;Neurosciences.;Developmental biology.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 169 p.
  • 总页数 169
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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