Chen Fei, Yao Hao, Wang Minjun, Yu Bing, Liu Qinggui, Li Jianxiu, He Zhiying, Hu Yi-Ping
Department of Cell Biology, Center for Stem Cell and Medicine, Second Military Medical University, PR China.
Department of Cell Biology, Center for Stem Cell and Medicine, Second Military Medical University, PR China.
Int J Biochem Cell Biol. 2016 Nov;80:154-162. doi: 10.1016/j.biocel.2016.09.024. Epub 2016 Sep 30.
Induced hepatic stem cells (iHepSCs) have great potential as donors for liver cell therapy due to their abilities for self-renewal and bi-potential differentiation. However, the molecular mechanism regulating proliferation and differentiation of iHepSCs is poorly understood. In this study, we provide evidence that the homeodomain transcription factor, Pitx2, is essential to maintain iHepSCs stem cell characteristics. Suppressing Pitx2 expression in iHepSCs by lentivirus mediated specific shRNA markedly reduced the expression of the hepatic stem cell-associated genes (Lgr5, EpCAM, and Sox9) with concomitant inhibition of proliferation by blocking the G1/S phase transition, and these phenotypic changes were reversed upon re-expression of Pitx2. Pitx2 knockdown also resulted in up-regulation of the p53-induced Cdk inhibitor p21, and down-regulation of its downstream effector CDK2-Cyclin E kinase complex. Furthermore, we observed that iHepSCs were more efficiently induced to differentiate into both hepatocytes and cholangiocytes when Pitx2 expression was suppressed, as compared to unmanipulated iHepSCs. These findings reveal that Pitx2 expression may be leveraged to control the status of iHepSCs during expansion in vitro to provide a strategy for further application of iHepSCs in liver cell therapy.
诱导性肝干细胞(iHepSCs)因其自我更新和双潜能分化能力,作为肝细胞治疗的供体具有巨大潜力。然而,调节iHepSCs增殖和分化的分子机制尚不清楚。在本研究中,我们提供证据表明,同源结构域转录因子Pitx2对于维持iHepSCs的干细胞特性至关重要。通过慢病毒介导的特异性shRNA抑制iHepSCs中Pitx2的表达,显著降低了肝干细胞相关基因(Lgr5、EpCAM和Sox9)的表达,同时通过阻断G1/S期转换抑制了增殖,并且在重新表达Pitx2后这些表型变化得以逆转。Pitx2基因敲低还导致p53诱导的细胞周期蛋白依赖性激酶抑制剂p21上调,及其下游效应物CDK2-细胞周期蛋白E激酶复合物下调。此外,我们观察到,与未处理的iHepSCs相比,当Pitx2表达被抑制时,iHepSCs更有效地被诱导分化为肝细胞和胆管细胞。这些发现表明,在体外扩增过程中,可以利用Pitx2的表达来控制iHepSCs的状态,为iHepSCs在肝细胞治疗中的进一步应用提供策略。