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Updated: May 10, 2026

In vivo Reprogramming of Adult Somatic Cells to Pluripotency by Overexpression of Yamanaka Factors
Published on: December 17, 2013
Stimulation of somatic cell reprogramming by ERas-Akt-FoxO1 signaling axis
Yong Yu1, Dan Liang, Qing Tian
1State Key Laboratory of Cell Biology, Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai, China.
Abstract:
Reprogramming of somatic cells to induced pluripotent stem cells (iPSCs) shares much similarity to the cancer initiation process, and the molecular mechanisms underlying both processes remain to be elucidated. Here, we report that a tumor- or embryonic stem cell-specific Ras gene ERas, which encodes a constitutively active form of GTPase, and its downstream Phosphoinositide-3 kinase/Akt signaling pathway are important facilitators for the somatic reprogramming process. We found that overexpression of ERas retrovirally enhanced mouse iPSC induction while ERas knockdown repressed it. Modulation of Akt signaling by genetic or chemical means greatly impacted the reprogramming efficiency. Forced expression of a constitutively active Akt1 gene could rescue the reduced efficiency resulting from ERas knockdown, and point-mutation analyses further revealed that ERas is tightly coupled with Akt signaling to enhance reprogramming. Mechanistically, the forkhead transcription factor FoxO1 can function as a barrier to the iPSC induction, and the inactivation of FoxO1 by Akt-dependent phosphorylation largely accounts for the enhancing effect of ERas-Akt signaling on reprogramming. Collectively, these results unravel the significance of the ERas-Akt-FoxO1 signaling axis in iPSC generation, suggesting a possibly shared molecular basis for both somatic reprogramming and cancer initiation.
Insights
The ERas-Akt-FoxO1 signaling pathway promotes somatic cell reprogramming into induced pluripotent stem cells (iPSCs). This pathway
Area of Science:
- Stem Cell Biology
- Molecular Biology
- Cancer Biology
Background:
- Somatic cell reprogramming to induced pluripotent stem cells (iPSCs) shares similarities with cancer initiation.
- The molecular mechanisms underlying both processes require further elucidation.
Purpose of the Study:
- To investigate the role of the ERas-Akt signaling pathway in somatic cell reprogramming.
- To identify molecular mechanisms by which ERas facilitates iPSC generation.
Main Methods:
- Retroviral overexpression and knockdown of ERas in mouse somatic cells.
- Genetic and chemical modulation of Phosphoinositide-3 kinase/Akt signaling.
- Analysis of forkhead transcription factor FoxO1 phosphorylation and activity.
Main Results:
- ERas overexpression enhanced iPSC induction, while ERas knockdown repressed it.
- Modulation of Akt signaling significantly impacted reprogramming efficiency.
- ERas-Akt signaling promotes reprogramming by inactivating the FoxO1 transcription factor.
Conclusions:
- The ERas-Akt-FoxO1 signaling axis is crucial for efficient iPSC generation.
- This pathway's involvement suggests shared molecular mechanisms between somatic reprogramming and cancer initiation.
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