Fan Wei, Li Xiaoling
Signal Transduction Laboratory, National Institute of Environmental Health Sciences, North Carolina, Research Triangle Park, Triangle Park, USA.
Curr Stem Cell Rep. 2024 Sep;10(3):58-64. doi: 10.1007/s40778-024-00236-9. Epub 2024 May 9.
The maintenance and differentiation of embryonic stem cells are strictly coordinated with their metabolic status. As a core part of cellular metabolism, glycolysis provides energy and biomolecules important for stem cell proliferation and functions. Particularly, the differentiation of embryonic stem cells is associated with metabolic shifts between glycolysis and oxidative phosphorylation. However, how these metabolic swifts are regulated is still not completely known. This review aims to highlight recent advances in regulation of glycolysis at different stages of embryonic stem cells.
Through modulating glycolysis, multiple types of RNA molecules and RNA-binding proteins are critically involved in regulation of the self-renewal, pluripotency, and differentiation of embryonic stem cells.
RNA-mediated glycolytic regulation in embryonic stem cells is important for their maintenance and transitions between different stages of differentiation. Better understanding of these riboregulatory mechanisms will have potential for future research and therapeutic innovation.
胚胎干细胞的维持与分化与其代谢状态密切相关。作为细胞代谢的核心部分,糖酵解为干细胞增殖和功能提供能量及重要生物分子。特别是,胚胎干细胞的分化与糖酵解和氧化磷酸化之间的代谢转变有关。然而,这些代谢转变如何被调控仍不完全清楚。本综述旨在强调胚胎干细胞不同阶段糖酵解调控的最新进展。
通过调节糖酵解,多种类型的RNA分子和RNA结合蛋白在胚胎干细胞的自我更新、多能性和分化调控中起关键作用。
胚胎干细胞中RNA介导的糖酵解调控对其维持和不同分化阶段的转变很重要。更好地理解这些核糖调控机制将为未来研究和治疗创新带来潜力。