1 Protein Chemistry, Proteomics and Epigenetic Signaling, University of Antwerp , Antwerp, Belgium .
2 Institute of Organismic and Molecular Evolution, Molecular Genetics and Genome Analysis, Johannes Gutenberg-University Mainz , Mainz, Germany .
Stem Cells Dev. 2018 Mar 15;27(6):378-390. doi: 10.1089/scd.2017.0097. Epub 2018 Feb 27.
In the quest to unravel its functional significance, neuroglobin (Ngb), a brain-specific neuroprotective protein, has recently been proposed as an actor in neurodevelopment. As neural stem cells (NSCs) are fundamental during brain development, the present study aimed at investigating the role of Ngb in the growth and proliferation of NSCs by comparing an Ngb-floxed (Ngb-)NSC line, equivalent to the wild-type cellular situation, with an in-house created Ngb knockout (Ngb-)NSC line. Ngb-NSCs were characterized by an increased growth and proliferation capacity in vitro, supported by RNA sequencing and western blot results reporting the downregulation of Cdkn1a and the upregulation of Cdk6, both enhancing the cell cycle. Based on additional gene ontology enrichment and pathway analyses, we hypothesize that the loss of Ngb affects multiple cellular signaling pathways with the most important being the Akt-Tp53 axis.
在探索其功能意义的过程中,神经球蛋白(Ngb)作为一种大脑特异性神经保护蛋白,最近被提出作为神经发育的作用因子。由于神经干细胞(NSC)在大脑发育过程中至关重要,本研究旨在通过比较 Ngb 基因敲除(Ngb-)NSC 系和内部创建的 Ngb 敲除(Ngb-)NSC 系,来研究 Ngb 在 NSCs 生长和增殖中的作用。Ngb-NSC 系在体外表现出更高的生长和增殖能力,这得到了 RNA 测序和 Western blot 结果的支持,结果表明 Cdkn1a 下调和 Cdk6 上调,这两者都能促进细胞周期。基于额外的基因本体富集和通路分析,我们假设 Ngb 的缺失会影响多个细胞信号通路,其中最重要的是 Akt-Tp53 轴。