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首页> 外文期刊>Molecular Autism >Significant transcriptional changes in 15q duplication but not Angelman syndrome deletion stem cell-derived neurons
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Significant transcriptional changes in 15q duplication but not Angelman syndrome deletion stem cell-derived neurons

机译:15q复制中的重要转录变化,但Angelman综合征缺失干细胞衍生的神经元无明显变化

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BackgroundThe inability to analyze gene expression in living neurons from Angelman (AS) and Duplication 15q (Dup15q) syndrome subjects has limited our understanding of these disorders at the molecular level. MethodHere, we use dental pulp stem cells (DPSC) from AS deletion, 15q Duplication, and neurotypical control subjects for whole transcriptome analysis. We identified 20 genes unique to AS neurons, 120 genes unique to 15q duplication, and 3 shared transcripts that were differentially expressed in DPSC neurons vs controls. ResultsCopy number correlated with gene expression for most genes across the 15q11.2-q13.1 critical region. Two thirds of the genes differentially expressed in 15q duplication neurons were downregulated compared to controls including several transcription factors, while in AS differential expression was restricted primarily to the 15q region. Here, we show significant downregulation of the transcription factors FOXO1 and HAND2 in neurons from 15q duplication, but not AS deletion subjects suggesting that disruptions in transcriptional regulation may be a driving factor in the autism phenotype in Dup15q syndrome. Downstream analysis revealed downregulation of the ASD associated genes EHPB2 and RORA , both genes with FOXO1 binding sites. Genes upregulated in either Dup15q cortex or idiopathic ASD cortex both overlapped significantly with the most upregulated genes in Dup15q DPSC-derived neurons. ConclusionsFinding a significant increase in both HERC2 and UBE3A in Dup15q neurons and significant decrease in these two genes in AS deletion neurons may explain differences between AS deletion class and UBE3A specific classes of AS mutation where HERC2 is expressed at normal levels. Also, we identified an enrichment for FOXO1-regulated transcripts in Dup15q neurons including ASD-associated genes EHPB2 and RORA indicating a possible connection between this syndromic form of ASD and idiopathic cases.
机译:背景技术无法分析来自Angelman(AS)和Duplicat 15q(Dup15q)综合征受试者的活神经元中的基因表达,这限制了我们在分子水平上对这些疾病的理解。方法在这里,我们使用来自AS缺失,15q复制和神经型对照受试者的牙髓干细胞(DPSC)进行整个转录组分析。我们确定了AS神经元特有的20个基因,15q复制特有的120个基因以及在DPSC神经元与对照组中差异表达的3个共有转录本。结果在15q11.2-q13.1关键区域中,大多数基因的拷贝数与基因表达相关。与包含几个转录因子的对照相比,在15q复制神经元中差异表达的基因的三分之二被下调,而在AS中,差异表达主要限于15q区域。在这里,我们显示了来自15q复制的神经元中转录因子FOXO1和HAND2的显着下调,但AS缺失受试者却没有,这表明转录调控的破坏可能是Dup15q综合征自闭症表型的驱动因素。下游分析显示,ASD相关基因EHPB2和RORA均下调,这两个基因均具有FOXO1结合位点。在Dup15q皮质或特发性ASD皮质中上调的基因都与Dup15q DPSC衍生的神经元中最上调的基因显着重叠。结论发现Dup15q神经元中HERC2和UBE3A均显着增加,而AS缺失神经元中这两个基因显着减少,可能解释了AS缺失类和UBE3A特定类AS突变之间的差异,其中HERC2以正常水平表达。此外,我们在Dup15q神经元中发现了FOXO1调节的转录物的富集,包括ASD相关基因EHPB2和RORA,表明ASD的这种综合征形式与特发性病例之间可能存在联系。

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