Faculty of Biotechnology, Amol University of Special Modern Technologies, P.O.Box: 46168-49767, Amol, Iran.
Department of Reproductive Biology, Faculty of Advanced Medical Sciences, Tabriz University of Medical Sciences, Tabriz, Iran.
Sci Rep. 2024 Oct 15;14(1):24092. doi: 10.1038/s41598-024-75529-4.
The transcription factors NANOG and POU5F1 (OCT4) play crucial roles in maintaining pluripotency in embryonic stem (ES) cells. While their functions have been well-studied, the specific interactions between NANOG and POU5F1 and their combined effects on pluripotency in ES-like and Epiblast cells remain less understood. Understanding these associations is vital for refining pluripotent stem cell characterization and advancing regenerative medicine. In this matter, we investigated the associations between NANOG and POU5F1 in maintaining pluripotency in ES-like and Epiblast cells and how these interactions contribute to the distinct pluripotent states of these cells. In the present paper, we examined the pattern of NANOG expression by the immunocytochemical method in embryonic stem-like (ES-like) cells and compared it with its expression pattern in embryonic stem cells (ESCs). Similarly, we examined the expression pattern of POU5F1 in ES-like cells, ESCs, and epiblast cells and compared the expression pattern of these two genes with each other. On the other hand, using Fluidigm Biomark system analysis, we compared the amount of NANOG mRNA in these three cell lines and differentiated and undifferentiated Spermatogonial stem cells in several passages. Microscopic observations indicated the cytoplasmic expression of NANOG in the considered cells; moreover, they showed a similar expression pattern of NANOG with POU5F1 in the experimented cells. It has also been suggested that the more limited the cell's pluripotency, the lower the expression of these two genes. However, the decrease in NANOG expression is less than that of POU5F1. Fluidigm real-time RT-PCR analysis also confirmed these results. During the experimental process, protein-protein (PPI) network analysis shows a significant association of NANOG with other stem cell proteins, such as POU5F1. Our findings reveal distinct yet overlapping roles of NANOG and POU5F1 in maintaining pluripotency in ES-like and Epiblast cells. The differential binding patterns and functional interactions between these factors underscore the complexity of pluripotency regulation in different stem cell states. This study provides new insights into the molecular mechanisms governing pluripotency and highlights potential targets for enhancing stem cell-based therapies.
转录因子 NANOG 和 POU5F1(OCT4)在维持胚胎干细胞(ES 细胞)的多能性方面发挥着关键作用。虽然它们的功能已经得到了很好的研究,但 NANOG 和 POU5F1 之间的具体相互作用及其对 ES 样细胞和上胚层细胞多能性的综合影响仍知之甚少。了解这些关联对于完善多能干细胞的特征描述和推进再生医学至关重要。在这个问题上,我们研究了 NANOG 和 POU5F1 在维持 ES 样细胞和上胚层细胞多能性方面的相互作用,以及这些相互作用如何导致这些细胞的不同多能状态。在本文中,我们通过免疫细胞化学方法检查了 NANOG 在胚胎干细胞样(ES 样)细胞中的表达模式,并将其与胚胎干细胞(ESCs)中的表达模式进行了比较。同样,我们检查了 POU5F1 在 ES 样细胞、ESCs 和上胚层细胞中的表达模式,并将这两个基因的表达模式进行了比较。另一方面,我们使用 Fluidigm Biomark 系统分析比较了这三种细胞系和经过几次传代的分化和未分化精原干细胞中 NANOG mRNA 的含量。显微镜观察表明,在所研究的细胞中 NANOG 呈现细胞质表达;此外,它们显示出实验细胞中 NANOG 与 POU5F1 具有相似的表达模式。有人还提出,细胞的多能性越有限,这两个基因的表达越低。然而,NANOG 表达的下降幅度小于 POU5F1。Fluidigm 实时 RT-PCR 分析也证实了这些结果。在实验过程中,蛋白质-蛋白质(PPI)网络分析表明 NANOG 与其他干细胞蛋白(如 POU5F1)之间存在显著关联。我们的研究结果揭示了 NANOG 和 POU5F1 在维持 ES 样和上胚层细胞多能性方面的独特但重叠的作用。这些因子之间的差异结合模式和功能相互作用突显了不同干细胞状态下多能性调控的复杂性。这项研究为多能性调控的分子机制提供了新的见解,并强调了增强基于干细胞的治疗的潜在目标。