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首页> 外文期刊>Cell death and differentiation >A novel RING finger protein, Znf179, modulates cell cycle exit and neuronal differentiation of P19 embryonal carcinoma cells.
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A novel RING finger protein, Znf179, modulates cell cycle exit and neuronal differentiation of P19 embryonal carcinoma cells.

机译:新型RING指蛋白Znf179调节P19胚胎癌细胞的细胞周期退出和神经元分化。

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Znf179 is a member of the RING finger protein family. During embryogenesis, Znf179 is expressed in a restricted manner in the brain, suggesting a potential role in nervous system development. In this report, we show that the expression of Znf179 is upregulated during P19 cell neuronal differentiation. Inhibition of Znf179 expression by RNA interference significantly attenuated neuronal differentiation of P19 cells and a primary culture of cerebellar granule cells. Using a microarray approach and subsequent functional annotation analysis, we identified differentially expressed genes in Znf179-knockdown cells and found that several genes are involved in development, cellular growth, and cell cycle control. Flow cytometric analyses revealed that the population of G0/G1 cells decreased in Znf179-knockdown cells. In agreement with the flow cytometric data, the number of BrdU-incorporated cells significantly increased in Znf179-knockdown cells. Moreover, in Znf179-knockdown cells, p35, a neuronal-specific Cdk5 activator that is known to activate Cdk5 and may affect the cell cycle, and p27, a cell cycle inhibitor, also decreased. Collectively, these results show that induction of the Znf179 gene may be associated with p35 expression and p27 protein accumulation, which lead to cell cycle arrest in the G0/G1 phase, and is critical for neuronal differentiation of P19 cells.
机译:Znf179是RING指蛋白家族的成员。在胚胎发生过程中,Znf179在大脑中以受限的方式表达,提示其在神经系统发育中的潜在作用。在此报告中,我们显示Znf179的表达在P19细胞神经元分化过程中被上调。 RNA干扰抑制Znf179表达可显着减弱P19细胞和小脑颗粒细胞的原代培养物的神经元分化。使用微阵列方法和随后的功能注释分析,我们鉴定了在Znf179-knockdown细胞中差异表达的基因,并发现几个基因参与发育,细胞生长和细胞周期控制。流式细胞仪分析表明,在Znf179-knockdown细胞中,G0 / G1细胞的数量减少了。与流式细胞仪数据一致,在Znf179-knockdown细胞中,掺入BrdU的细胞数量显着增加。此外,在Znf179基因敲低细胞中,p35是一种神经元特异性Cdk5活化剂,已知会激活Cdk5并可能影响细胞周期,而p27(一种细胞周期抑制剂)也降低了。总的来说,这些结果表明,Znf179基因的诱导可能与p35表达和p27蛋白积累有关,这导致细胞周期停滞在G0 / G1期,并且对于P19细胞的神经元分化至关重要。

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