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FOXG1 expression shows correlation with neuronal differentiation in cerebellar development, aggressive phenotype in medulloblastomas, and survival in a xenograft model of medulloblastoma

机译:FOXG1表达与小脑发育中的神经元分化,成神经细胞母细胞瘤的侵袭性表型以及成神经细胞母细胞瘤的异种移植模型的存活相关

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FOXG1 is a transcription factor that interacts with multiple signaling pathways and modulates neuronal differentiation in the telencephalon. Dysregulation of FOXG1 expression has been previously reported in medulloblastoma. In this study, we demonstrate a regional specific expression of FOXG1 and its colocalization with Nestin expression in the premigratory mitotically active (outer) layer of the external granular layer of the cerebellum. An inverse expression of the granular precursor cell markers, Math1 and Musashil, in the inner nonmitotic migratory layer of the external granular layer and in the internal granular-layer was observed. Furthermore, modulation of FOXG1 in the medulloblastoma cell line, DAOY, was associated with the induction of neuronal differentiation markers and significant changes in multiple signaling pathways regulating cell proliferation, differentiation, survival, and apoptosis. Additionally, we observed enhanced survival in intracerebellar mice xenografts injected with DAOY cells bearing shFOXG1 constructs versus shLuciferase construct. Overall, these findings suggest that down-modulation of FOXG1 is a prerequisite for the onset of neuronal differentiation during cerebellar development and that a decrease of FOXG1 in medulloblastoma cells offers a survival advantage in mice. We propose that the disruption of signaling pathways that promote mature neuronal differentiation by overexpressed FOXG1 is a contributing event in the neoplastic transformation of cerebellar stem cells. (C) 2015 Published by Elsevier Inc.
机译:FOXG1是一种转录因子,可与多种信号通路相互作用并调节端脑神经元分化。先前已经报道了在髓母细胞瘤中FOXG1表达的失调。在这项研究中,我们证明了FOXG1的区域特定表达及其在小脑外部颗粒层的迁移前有丝分裂活动(外)层中与Nestin表达的共定位。观察到在外部颗粒层的内部非有丝分裂迁移层和内部颗粒层中的颗粒前体细胞标记物Math1和Musashil的逆表达。此外,髓母细胞瘤细胞系DAOY中FOXG1的调节与神经元分化标志物的诱导以及调节细胞增殖,分化,存活和凋亡的多种信号通路的显着变化有关。此外,我们观察到在注射带有shFOXG1构建体与shLuciferiferase构建体的DAOY细胞的小脑小鼠异种移植物中存活率提高。总体而言,这些发现表明FOXG1的下调是小脑发育过程中神经元分化开始的先决条件,而髓母细胞瘤细胞中FOXG1的减少为小鼠提供了生存优势。我们提出,通过过度表达FOXG1促进成熟神经元分化的信号通路的破坏是小脑干细胞肿瘤转化中的一个促成事件。 (C)2015年由Elsevier Inc.出版

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