Department of Biology, Faculty of Sciences, University of Chile, Santiago, Chile; FONDAP Center for Genome Regulation, Santiago, Chile.
Int J Cancer. 2014 Jan 1;134(1):21-31. doi: 10.1002/ijc.28330. Epub 2013 Jul 24.
The canonical Sonic Hedgehog (Shh)/Gli pathway plays multiples roles during central nervous system (CNS) development. To elucidate the molecular repertoire of Shh mediators, we have recently described novel transcriptional targets in response to Shh pathway modulation. Among them, we were able to identify Neogenin1 (Neo1), a death dependence receptor, as a new direct Shh downstream regulator in neural precursor proliferation. As appropriate Shh signaling is required for cerebellar growth and alterations cause Shh-driven medulloblastoma (MB), here we have addressed the role of the Shh/Neogenin1 interaction in the context of cerebellar development and cancer. We demonstrate that the Shh pathway regulates Neogenin1 expression in mouse models that recapitulate the Shh MB subtype. We show that the canonical Shh pathway directly regulates the Neo1 gene acting through an upstream sequence in its promoter both in vitro and in vivo in granule neuron precursor cells. We also identified and characterized a functional Gli-binding site in the first intron of the human NEO1 gene. Gene expression profiling of more than 300 MB shows that NEO1 is indeed upregulated in SHH tumors compared to the other MB subgroups. Finally, we provide evidence that NEO1 is necessary for cell cycle progression in a human MB cell line, because a loss of function of NEO1 arrests cells in the G2/M phase. Taken together, these results highlight Neogenin1 as a novel downstream effector of the Shh pathway in MB and a possible therapeutic target.
经典的 Sonic Hedgehog(Shh)/Gli 通路在中枢神经系统(CNS)发育中发挥多种作用。为了阐明 Shh 途径调节剂的分子组成,我们最近描述了对 Shh 途径调节的新的转录靶标。其中,我们能够鉴定出 Neogenin1(Neo1),一种死亡依赖受体,作为神经前体细胞增殖中 Shh 的新的直接下游调节剂。由于适当的 Shh 信号对于小脑的生长是必需的,并且改变会导致 Shh 驱动的髓母细胞瘤(MB),因此我们研究了 Shh/Neogenin1 相互作用在小脑发育和癌症中的作用。我们证明 Shh 途径在模拟 Shh MB 亚型的小鼠模型中调节 Neogenin1 的表达。我们表明,经典的 Shh 途径通过其启动子中的上游序列直接调节 Neo1 基因,无论是在体外还是在体内的颗粒神经元前体细胞中。我们还鉴定并表征了人 NEO1 基因第一内含子中的功能性 Gli 结合位点。对超过 300 个 MB 的基因表达谱分析表明,与其他 MB 亚组相比,NEO1 在 SHH 肿瘤中确实上调。最后,我们提供了证据表明 NEO1 对于人 MB 细胞系中的细胞周期进展是必需的,因为 NEO1 的功能丧失会导致细胞停滞在 G2/M 期。总之,这些结果强调了 Neogenin1 作为 MB 中 Shh 途径的新下游效应物和可能的治疗靶标。