生物
神经母细胞
细胞命运测定
细胞生物学
神经干细胞
祖细胞
转录因子
不对称细胞分裂
干细胞
细胞分裂
癌变
祖细胞
细胞
神经发生
遗传学
癌症
基因
作者
K. Liu,Dan Shen,Jingwen Shen,Shihong Max Gao,Bo Li,Chouin Wong,Weidong Feng,Yan Song
标识
DOI:10.1016/j.devcel.2017.02.022
摘要
Asymmetric stem cell division establishes an initial difference between a stem cell and its differentiating sibling, critical for maintaining homeostasis and preventing carcinogenesis. Yet the mechanisms that consolidate and lock in such initial fate bias remain obscure. Here, we use Drosophila neuroblasts to demonstrate that the super elongation complex (SEC) acts as an intrinsic amplifier to drive cell fate commitment. SEC is highly expressed in neuroblasts, where it promotes self-renewal by physically associating with Notch transcription activation complex and enhancing HES (hairy and E(spl)) transcription. HES in turn upregulates SEC activity, forming an unexpected self-reinforcing feedback loop with SEC. SEC inactivation leads to neuroblast loss, whereas its forced activation results in neural progenitor dedifferentiation and tumorigenesis. Our studies unveil an SEC-mediated intracellular amplifier mechanism in ensuring robustness and precision in stem cell fate commitment and provide mechanistic explanation for the highly frequent association of SEC overactivation with human cancers.
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