Human somatic cells can be reprogrammed into neuron cell fate through regulation of a single transcription factor or application of small molecule cocktails. Methods: Here, we report that forskolin efficiently induces the conversion of human somatic cells into induced neurons (FiNs). Results: A large population of neuron-like phenotype cells was observed as early as 24-36 h post-induction. There were >90% TUJ1-, >80% MAP2-, and >80% NEUN-positive neurons at 5 days post-induction. Multiple subtypes of neurons were present among TUJ1-positive cells, including >60% cholinergic, >20% glutamatergic, >10% GABAergic, and >5% dopaminergic neurons. FiNs exhibited typical neural electrophysiological activity in vitro and the ability to survive in vitro and in vivo more than 2 months. Mechanistically, forskolin functions in FiN reprogramming by regulating the cAMP-CREB1-JNK signals, which upregulates cAMP-CREB1 expression and downregulates JNK expression. Conclusion: Overall, our studies identify a safer and efficient single-small-molecule-driven reprogramming approach for induced neuron generation and reveal a novel regulatory mechanism of neuronal cell fate acquisition.
Forskolin-driven conversion of human somatic cells into induced neurons through regulation of the cAMP-CREB1-JNK signaling
福斯可林通过调节 cAMP-CREB1-JNK 信号将人类体细胞转化为诱导神经元
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作者:Guodong Wang, Dandan Zhang, Liangshan Qin, Quanhui Liu, Wenkui Tang, Mingxing Liu, Fan Xu, Fen Tang, Leping Cheng, Huiming Mo, Xiang Yuan, Zhiqiang Wang, Ben Huang
| 期刊: | Theranostics | 影响因子: | 13.300 |
| 时间: | 2024 | 起止号: | 2024 Feb 11;14(4):1701-1719. |
| doi: | 10.7150/thno.92700 | 种属: | Human |
| 靶点: | VIME | 研究方向: | 信号转导、神经 |
| 细胞类型: | 其它细胞 | 信号通路: | GPCR/Calcium/cAMP、Neuroscience |
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