Institute of Molecular and Cell Biology, Immunos, Singapore.
Cell Cycle. 2011 Apr 1;10(7):1100-8. doi: 10.4161/cc.10.7.15090.
Embryonic stem (ES) cells are invaluable for their therapeutic potential as well as for the study of early development. Their clinical use demands an understanding of ES cell differentiation, particularly with respect to cell proliferation and the maintenance of genomic integrity, processes for which the transcription factor p53 is essential. However, although the function of p53 as a tumor suppressor has been extensively studied, its role in ES cell biology has not been clearly elucidated. To study p53 activity and regulation in differentiating ES cells, we used knock-in constructs to create a novel reporter system that provides a direct readout of p53 transcriptional activity. We thereby determine that the p53 pathway is active in ES cells, but that p53 activity and the p53-dependent stress response decrease upon differentiation. Although p53 protein levels and activity are usually primarily controlled by the ubiquitin ligase MDM2, we identify the MDM2 homolog MDM4 as the key modulator of p53 activity in differentiating ES cells. Our results provide a better understanding of ES cell regulation and could help to optimize ES cell differentiation protocols for their use in regenerative medicine.
胚胎干细胞(ES 细胞)具有治疗潜力,也可用于研究早期发育。为了将其应用于临床,我们需要了解 ES 细胞分化的过程,尤其是细胞增殖和基因组完整性维持的过程,这两个过程都需要转录因子 p53 的参与。尽管 p53 作为肿瘤抑制因子的功能已得到广泛研究,但它在 ES 细胞生物学中的作用尚未得到明确阐明。为了研究分化中的 ES 细胞中 p53 的活性和调控,我们使用了基因敲入构建体来创建一种新的报告系统,该系统可直接检测 p53 的转录活性。我们由此确定 p53 通路在 ES 细胞中是活跃的,但随着分化的进行,p53 的活性和 p53 依赖性应激反应会下降。虽然 p53 蛋白水平和活性通常主要受泛素连接酶 MDM2 调控,但我们发现 MDM2 同源物 MDM4 是分化中的 ES 细胞中 p53 活性的关键调节剂。我们的研究结果提供了对 ES 细胞调控的更好理解,并可能有助于优化 ES 细胞分化方案,以将其用于再生医学。