Choy Fong Chan, Klarić Thomas S, Koblar Simon A, Lewis Martin D
School of Biological Sciences, The University of Adelaide, Adelaide, SA, Australia.
School of Medicine, The University of Adelaide, Adelaide, SA, Australia.
Mol Neurobiol. 2017 Jul;54(5):3528-3541. doi: 10.1007/s12035-016-9912-4. Epub 2016 May 17.
Neuronal PAS domain protein 4 (Npas4) is a brain-specific transcription factor whose expression is enriched in neurogenic regions of the brain. In addition, it was demonstrated that Npas4 expression is dynamic and highly regulated during neural differentiation of embryonic stem cells (ESCs). While these findings implicate a role for Npas4 in neurogenesis, the underlying mechanisms of regulation remain unknown. Given that growing evidence suggests that microRNAs (miRNAs) play important roles in both embryonic and adult neurogenesis, we reasoned that miRNAs are good candidates for regulating Npas4 expression during neural differentiation of ESCs. In this study, we utilized the small RNA sequencing method to profile miRNA expression during neural differentiation of mouse ESCs. Two differentially expressed miRNAs were identified to be able to significantly reduce reporter gene activity by targeting the Npas4 3'UTR, namely miR-744 and miR-224. More importantly, ectopic expression of these miRNAs during neural differentiation resulted in downregulation of endogenous Npas4 expression. Subsequent functional analysis revealed that overexpression of either miR-744 or miR-224 delayed early neural differentiation, reduced GABAergic neuron production and inhibited neurite outgrowth. Collectively, our findings indicate that Npas4 not only functions at the early stages of neural differentiation but may also, in part, contribute to neuronal subtype specification and neurite development.
神经元PAS结构域蛋白4(Npas4)是一种脑特异性转录因子,其表达在脑的神经发生区域中富集。此外,已证明Npas4的表达在胚胎干细胞(ESC)的神经分化过程中是动态的且受到高度调控。虽然这些发现暗示Npas4在神经发生中起作用,但其潜在的调控机制仍然未知。鉴于越来越多的证据表明微小RNA(miRNA)在胚胎和成体神经发生中都发挥着重要作用,我们推测miRNA是在ESC神经分化过程中调节Npas4表达的良好候选者。在本研究中,我们利用小RNA测序方法来分析小鼠ESC神经分化过程中的miRNA表达。鉴定出两种差异表达的miRNA,即miR-744和miR-224,它们能够通过靶向Npas4 3'UTR显著降低报告基因活性。更重要的是,在神经分化过程中这些miRNA的异位表达导致内源性Npas4表达下调。随后的功能分析表明,miR-744或miR-224的过表达延迟了早期神经分化,减少了GABA能神经元的产生并抑制了神经突生长。总的来说,我们的研究结果表明Npas4不仅在神经分化的早期阶段起作用,而且在一定程度上可能也有助于神经元亚型的特化和神经突的发育。