新皮层
电穿孔
祖细胞
大脑皮层
生物
细胞生物学
神经干细胞
前体细胞
皮质(解剖学)
调节器
神经科学
祖细胞
细胞分化
干细胞
细胞
基因
遗传学
作者
Xiuli Wang,Yan‐Xia Ma,Renjie Xu,Jinjin Ma,Hong‐Cheng Zhang,Shi‐Bin Qi,Jinhui Xu,Xu‐Zhen Qin,Haonan Zhang,Peipei Liu,Jianquan Chen,Bin Li,Huilin Yang,Jile Xie
摘要
Abstract The anatomical structure of the mammalian cerebral cortex is the essential foundation for its complex neural activity. This structure is developed by proliferation, differentiation, and migration of neural progenitor cells (NPCs), the fate of which is spatially and temporally regulated by the proper gene. This study was used in utero electroporation and found that the well‐known oncogene c‐Myc mainly promoted NPCs’ proliferation and their transformation into intermediate precursor cells. Furthermore, the obtained results also showed that c‐Myc blocked the differentiation of NPCs to postmitotic neurons, and the expression of telomere reverse transcriptase was controlled by c‐Myc in the neocortex. These findings indicated c‐Myc as a key regulator of the fate of NPCs during the development of the cerebral cortex.
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