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HIF-1α/Wnt 信号依赖性控制基因转录调节神经胶质瘤干细胞的神经元分化。

HIF-1α/Wnt signaling-dependent control of gene transcription regulates neuronal differentiation of glioblastoma stem cells.

机构信息

Department of Woman and Children's Health, University of Padova, Padova, Italy.

Istituto di Ricerca Pediatrica - Città della Speranza - IRP, Padova, Italy.

出版信息

Theranostics. 2019 Jul 9;9(17):4860-4877. doi: 10.7150/thno.35882. eCollection 2019.

Abstract

HIF-1α has been suggested to interplay with Wnt signaling components in order to activate a neuronal differentiation process in both normal brain and glioblastoma (GBM). Based on these data, we explored the molecular mechanisms underlying the observed capability of GBM cells to acquire a neuronal phenotype upon Wnt signaling stimulation and how the microenvironment, particularly hypoxia, modulates this process. : here, the employment of ChIP-seq techniques together with co-immunoprecipitation approaches allowed to reconstruct the molecular interactions responsible for activating specific pro-differentiating transcriptional programs in GBM cells. Moreover, gene silencing/over-expression approaches coupled with the functional analysis of cell phenotype were applied to confirm ChIP-driven hypotheses. Finally, we combined the use of publicly available gene expression datasets with protein expression data by immunohistochemistry to test the clinical relevance of obtained results. : our data clearly suggest that HIF-1α is recruited by the β-catenin/TCF1 complex to foster neuronal differentiation gene transcription in hypoxic GBM cells. Conversely, at higher oxygen levels, the increased expression of TCF4 exerts a transcriptional inhibitory function on the same genomic regions, thus counteracting differentiation. Moreover, we demonstrate the existence of a positive correlation between the expression levels of HIF-1α, TCF1 and neuronal phenotype in GBM tumors, accompanied by the over-expression of several Wnt signaling components, finally affecting patient prognosis. : we unveiled a peculiar mechanism by which TCF1 and HIF-1α can induce a reminiscent neuronal differentiation of hypoxic GBM cells, which is hampered, in normoxia, by high levels of TCF4, thus not only controlling the balance between differentiation and stemness, but also impacting on intra-tumoral heterogeneity and eventually patient outcome.

摘要

HIF-1α 被认为与 Wnt 信号成分相互作用,以在正常大脑和胶质母细胞瘤 (GBM) 中激活神经元分化过程。基于这些数据,我们探讨了观察到的 GBM 细胞在 Wnt 信号刺激下获得神经元表型的能力的分子机制,以及微环境(特别是缺氧)如何调节这个过程。在这里,采用 ChIP-seq 技术和共免疫沉淀方法,重建了负责激活 GBM 细胞特定促分化转录程序的分子相互作用。此外,通过基因沉默/过表达方法结合细胞表型的功能分析,验证了 ChIP 驱动的假设。最后,我们将公共可用的基因表达数据集与免疫组织化学的蛋白质表达数据相结合,以测试获得结果的临床相关性。我们的数据清楚地表明,HIF-1α 被 β-catenin/TCF1 复合物募集,以促进缺氧 GBM 细胞中的神经元分化基因转录。相反,在较高的氧水平下,TCF4 的表达增加对相同的基因组区域发挥转录抑制功能,从而抵消分化。此外,我们证明了 HIF-1α、TCF1 和 GBM 肿瘤中神经元表型的表达水平之间存在正相关,伴随着几种 Wnt 信号成分的过度表达,最终影响患者的预后。我们揭示了一种特殊的机制,即 TCF1 和 HIF-1α 可以诱导缺氧 GBM 细胞的神经元分化,而在正常氧条件下,TCF4 的高水平会阻碍这种分化,从而不仅控制分化和干细胞之间的平衡,还影响肿瘤内异质性,最终影响患者的预后。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb2a/6691379/d99e400f7f92/thnov09p4860g001.jpg

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