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Knockdown of human TCF4 affects multiple signaling pathways involved in cell survival, epithelial to mesenchymal transition and neuronal differentiation

机译:抑制人类TCF4会影响涉及细胞存活,上皮到间质转化和神经元分化的多种信号通路

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摘要

Haploinsufficiency of TCF4 causes Pitt-Hopkins syndrome (PTHS): a severe form of mental retardation with phenotypic similarities to Angelman, Mowat-Wilson and Rett syndromes. Genome-wide association studies have also found that common variants in TCF4 are associated with an increased risk of schizophrenia. Although TCF4 is transcription factor, little is known about TCF4-regulated processes in the brain. In this study we used genome-wide expression profiling to determine the effects of acute TCF4 knockdown on gene expression in SH-SY5Y neuroblastoma cells. We identified 1204 gene expression changes (494 upregulated, 710 downregulated) in TCF4 knockdown cells. Pathway and enrichment analysis on the differentially expressed genes in TCF4-knockdown cells identified an over-representation of genes involved in TGF-β signaling, epithelial to mesenchymal transition (EMT) and apoptosis. Among the most significantly differentially expressed genes were the EMT regulators, SNAI2 and DEC1 and the proneural genes, NEUROG2 and ASCL1. Altered expression of several mental retardation genes such as UBE3A (Angelman Syndrome), ZEB2 (Mowat-Wilson Syndrome) and MEF2C was also found in TCF4-depleted cells. These data suggest that TCF4 regulates a number of convergent signaling pathways involved in cell differentiation and survival in addition to a subset of clinically important mental retardation genes.
机译:TCF4的单倍剂量不足会导致皮特-霍普金斯综合征(PTHS):一种严重的智力低下,与Angelman,Mowat-Wilson和Rett综合征的表型相似。全基因组关联研究还发现,TCF4的常见变异与精神分裂症的风险增加有关。尽管TCF4是转录因子,但对大脑中TCF4调控的过程知之甚少。在这项研究中,我们使用了全基因组表达谱来确定急性TCF4敲低对SH-SY5Y神经母细胞瘤细胞基因表达的影响。我们在TCF4敲低细胞中鉴定了1204个基因表达变化(494个上调,710个下调)。对TCF4基因敲低细胞中差异表达基因的途径和富集分析确定了参与TGF-β信号传导,上皮到间充质转化(EMT)和凋亡的基因的过度表达。 EMT调节子SNAI2和DEC1以及前神经基因NEUROG2和ASCL1是表达最明显的差异基因。在TCF4缺失的细胞中也发现了几种智力低下基因的表达改变,例如UBE3A(安格曼综合症),ZEB2(莫瓦特-威尔逊综合症)和MEF2C。这些数据表明,TCF4除了调节临床上重要的智力低下基因的子集外,还调节许多与细胞分化和存活有关的收敛信号通路。

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