Gurdon Institute, University of Cambridge, Cambridge, United Kingdom.
PLoS One. 2010 Oct 18;5(10):e13453. doi: 10.1371/journal.pone.0013453.
To investigate the functions of Dicer and microRNAs in neural stem (NS) cell self-renewal and neurogenesis, we established neural stem cell lines from the embryonic mouse Dicer-null cerebral cortex, producing neural stem cell lines that lacked all microRNAs.
Dicer-null NS cells underwent normal self-renewal and could be maintained in vitro indefinitely, but had subtly altered cell cycle kinetics and abnormal heterochromatin organisation. In the absence of all microRNAs, Dicer-null NS cells were incapable of generating either glial or neuronal progeny and exhibited a marked dependency on exogenous EGF for survival. Dicer-null NS cells assumed complex differences in mRNA and protein expression under self-renewing conditions, upregulating transcripts indicative of self-renewing NS cells and expressing genes characteristic of differentiating neurons and glia. Underlining the growth-factor dependency of Dicer-null NS cells, many regulators of apoptosis were enriched in expression in these cells. Dicer-null NS cells initiate some of the same gene expression changes as wild-type cells under astrocyte differentiating conditions, but also show aberrant expression of large sets of genes and ultimately fail to complete the differentiation programme. Acute replacement of Dicer restored their ability to differentiate to both neurons and glia.
The block in differentiation due to loss of Dicer and microRNAs is reversible and the significantly altered phenotype of Dicer-null NS cells does not constitute a permanent transformation. We conclude that Dicer and microRNAs function in this system to maintain the neural stem cell phenotype and to facilitate the completion of differentiation.
为了研究 Dicer 和 microRNAs 在神经干细胞(NS)自我更新和神经发生中的功能,我们从胚胎鼠 Dicer 缺失大脑皮层中建立了神经干细胞系,产生了缺乏所有 microRNAs 的神经干细胞系。
Dicer 缺失的 NS 细胞经历了正常的自我更新,可以在体外无限期维持,但细胞周期动力学发生了微妙的改变,异染色质组织异常。在缺乏所有 microRNAs 的情况下,Dicer 缺失的 NS 细胞无法产生神经胶质或神经元祖细胞,并且对 EGF 的生存依赖性显著增加。在自我更新条件下,Dicer 缺失的 NS 细胞表现出复杂的 mRNA 和蛋白质表达差异,上调了指示自我更新 NS 细胞的转录本,并表达了分化神经元和神经胶质的特征基因。Dicer 缺失的 NS 细胞的生长因子依赖性强调了这一点,许多凋亡调节剂在这些细胞中表达丰富。在星形胶质细胞分化条件下,Dicer 缺失的 NS 细胞启动了与野生型细胞相同的基因表达变化,但也表现出大量基因的异常表达,最终无法完成分化程序。Dicer 的急性替换恢复了它们分化为神经元和神经胶质的能力。
由于 Dicer 和 microRNAs 的缺失导致分化受阻是可逆的,Dicer 缺失的 NS 细胞的显著改变表型并不构成永久性转化。我们得出结论,Dicer 和 microRNAs 在这个系统中发挥作用,以维持神经干细胞表型并促进分化的完成。