Forkhead box family transcription factors as versatile regulators for cellular reprogramming to pluripotency

Forkhead box (Fox) transcription factors play important roles in mammalian development and disease. However, their function in mouse somatic cell reprogramming remains unclear. Here, we report that FoxD subfamily and FoxG1 accelerate induced pluripotent stem cells (iPSCs) generation from mouse fibro...

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Veröffentlicht in:Cell Regeneration 2021-07, Vol.10 (1), p.1-17, Article 17
Hauptverfasser: Fu, Meijun, Chen, Huan, Cai, Zepo, Yang, Yihang, Feng, Ziyu, Zeng, Mengying, Chen, Lijun, Qin, Yue, Cai, Baomei, Zhu, Pinghui, Zhou, Chunhua, Yu, Shengyong, Guo, Jing, Liu, Jing, Cao, Shangtao, Pei, Duanqing
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Sprache:eng
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Zusammenfassung:Forkhead box (Fox) transcription factors play important roles in mammalian development and disease. However, their function in mouse somatic cell reprogramming remains unclear. Here, we report that FoxD subfamily and FoxG1 accelerate induced pluripotent stem cells (iPSCs) generation from mouse fibroblasts as early as day4 while FoxA and FoxO subfamily impede this process obviously. More importantly, FoxD3, FoxD4 and FoxG1 can replace Oct4 respectively and generate iPSCs with germline transmission together with Sox2 and Klf4. On the contrary, FoxO6 almost totally blocks reprogramming through inhibiting cell proliferation, suppressing the expression of pluripotent genes and hindering the process of mesenchymal to epithelial transition (MET). Thus, our study uncovers unexpected roles of Fox transcription factors in reprogramming and offers new insights into cell fate transition.
ISSN:2045-9769
2045-9769
DOI:10.1186/s13619-021-00078-4