Notch Inhibition Enhances Morphological Reprogramming of microRNA-Induced Human Neurons

生物 Notch信号通路 重编程 细胞生物学 转录组 基因沉默 小RNA 神经突 细胞命运测定 下调和上调 信号转导 细胞 基因表达 基因 转录因子 遗传学 体外
作者
Kyle F. Burbach,Shanyun Wu,Andrew S. Yoo
出处
期刊:Stem Cells [Oxford University Press]
标识
DOI:10.1093/stmcls/sxae079
摘要

The role of Notch signaling in direct neuronal reprogramming remains unknown despite its importance to brain development in vivo. Here, we use microRNA-induced neurons that are directly reprogrammed from human fibroblasts to determine how Notch signaling contributes to neuronal identity. We found that Notch inhibition during the first week of reprogramming was both necessary and sufficient to enhance neurite outgrowth at a later timepoint, indicating an important role in erasure of the original cell identity. Accordingly, transcriptomic analysis showed that the effect of Notch inhibition was likely due to improvements in fibroblast fate erasure and silencing of non-neuronal genes. To this effect, we identify MYLIP, whose downregulation in response to Notch inhibition significantly promoted neurite outgrowth. Moreover, Notch inhibition resulted in cells with neuronal transcriptome signature defined by expressing long genes at a faster rate than the control, demonstrating the effect of accelerated fate erasure on neuronal fate acquisition. Our results demonstrate the antagonistic role of Notch signaling to the pro-neuronal microRNAs 9 and 124 and the benefits of its inhibition to the acquisition of neuronal morphology.

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