Live isolation of naïve ESCs via distinct glucose metabolism and stored glycogen

胚胎干细胞 糖原 氧化磷酸化 糖酵解 诱导多能干细胞 生物 细胞生物学 细胞内 生物化学 化学 新陈代谢 基因
作者
Keun-Tae Kim,Jiyoung Oh,Seokwoo Park,Seong-Min Kim,Patterson Benjamin,In‐Hyun Park,Kwang‐Hoon Chun,Young‐Tae Chang,Hyuk‐Jin Cha
出处
期刊:Metabolic Engineering [Elsevier BV]
卷期号:72: 97-106 被引量:4
标识
DOI:10.1016/j.ymben.2022.03.003
摘要

Naïve and primed pluripotent stem cells recapitulate the peri- and post-implantation development, respectively. Thus, investigation of distinct traits between each pluripotent stem cell type would shed light on early embryonic processes. Herein, by screening a fluorescent probe library, we found that intracellular glycogen led to specific reactivity to CDg4, a glycogen fluorescence sensor, in both human and mouse naïve embryonic stem cells (ESCs). The requirement of constant inhibition of Gsk3β as well as high oxidative phosphorylation (OxPHOS) in naïve compared to primed ESCs was closely associated to high level of intracellular glycogen in naïve ESCs. Both capacity of OxPHOS and stored glycogen, rescued naïve ESCs by transient inhibition of glycolysis, which selectively eliminated primed ESCs. Additionally, naïve ESCs with active OxPHOS were enriched from a mixture with primed ESCs by high reactivity to ATP-Red1, a mitochondrial ATP fluorescence probe. These results indicate the active OxPHOS and high intracellular glycogen as a novel "biomarker" delineating metabolic remodeling during the transition of naïve pluripotency.

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