Institute of Primate Translational Medicine, Kunming University of Science and Technology, Kunming, 650500, Yunnan, China.
Curr Stem Cell Res Ther. 2017;12(6):442-446. doi: 10.2174/1574888X11666161226145432.
Pluripotency of stem cells is an important scientific issue and is attracting great interest for the broader community, especially for regenerative medicine field. Pluripotent stem cells (PSCs) in mammalians are defined as naive- and primed-states according to their cellular, molecular, epigenetic and functional states.
Understand the correlation between DNA methylation and pluripotency of stem cells.
Based on published papers, we discussed the DNA methylation and corresponding functions for embryonic stem cells. We also summarized the correlation between DNA methylation and naive state maintenance, and outlook future emphasis of DNA methylation for primate naive PSCs.
DNA methylation is closely associated with cell reprogramming, functional remodeling and cell differentiation of PSCs. The pluripotency and naive characteristics of PSCs are closely associated with cell DNA methylation. However, the mechanisms, which are involved in methylation modifications of naive ground, are still one of the important scientific issues for primate naive PSCs because of lack of widely accepted culture condition.
干细胞的多能性是一个重要的科学问题,引起了更广泛的科学界的兴趣,特别是对再生医学领域。哺乳动物中的多能干细胞(PSCs)根据其细胞、分子、表观遗传和功能状态被定义为原始状态和初始状态。
了解 DNA 甲基化与干细胞多能性的相关性。
基于已发表的论文,我们讨论了胚胎干细胞的 DNA 甲基化及其相应的功能。我们还总结了 DNA 甲基化与原始状态维持之间的相关性,并展望了未来对灵长类动物原始 PSCs 中 DNA 甲基化的关注重点。
DNA 甲基化与 PSCs 的细胞重编程、功能重塑和细胞分化密切相关。PSCs 的多能性和原始特征与细胞 DNA 甲基化密切相关。然而,由于缺乏广泛接受的培养条件,原始状态下甲基化修饰所涉及的机制仍然是灵长类动物原始 PSCs 的重要科学问题之一。