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Glutathione safeguards TET‐dependent DNA demethylation and is critical for the acquisition of totipotency and pluripotency during preimplantation development.

Authors :
Liu, Juan
Chu, Meiqiang
Zhang, Jingyu
He, Jiale
Yang, Qianying
Tao, Li
Wang, Zhaochen
Yao, Fusheng
Zhao, Wei
Ouyang, Si
Chen, Lei
Zhang, Shuai
Gao, Shuai
Tian, Jianhui
Ren, Likun
An, Lei
Source :
FASEB Journal. Feb2024, Vol. 38 Issue 3, p1-18. 18p.
Publication Year :
2024

Abstract

During early development, both genome‐wide epigenetic reprogramming and metabolic remodeling are hallmark changes of normal embryogenesis. However, little is known about their relationship and developmental functions during the preimplantation window, which is essential for the acquisition of totipotency and pluripotency. Herein, we reported that glutathione (GSH), a ubiquitous intracellular protective antioxidant that maintains mitochondrial function and redox homeostasis, plays a critical role in safeguarding postfertilization DNA demethylation and is essential for establishing developmental potential in preimplantation embryos. By profiling mitochondria‐related transcriptome that coupled with different pluripotency, we found GSH is a potential marker that is tightly correlated with full pluripotency, and its beneficial effect on prompting developmental potential was functionally conformed using in vitro fertilized mouse and bovine embryos as the model. Mechanistic study based on preimplantation embryos and embryonic stem cells further revealed that GSH prompts the acquisition of totipotency and pluripotency by facilitating ten‐eleven‐translocation (TET)‐dependent DNA demethylation, and ascorbic acid (AsA)‐GSH cycle is implicated in the process. In addition, we also reported that GSH serves as an oviductal paracrine factor that supports development potential of preimplantation embryos. Thus, our results not only advance the current knowledge of functional links between epigenetic reprogramming and metabolic remodeling during preimplantation development but also provided a promising approach for improving current in vitro culture system for assisted reproductive technology. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
08926638
Volume :
38
Issue :
3
Database :
Academic Search Index
Journal :
FASEB Journal
Publication Type :
Academic Journal
Accession number :
175364847
Full Text :
https://doi.org/10.1096/fj.202301220R