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Updated: Apr 15, 2026

The use of SC1 Pluripotin to Support mESC Self-renewal in the Absence of LIF
Published on: November 18, 2009
Akt suppresses DLK for maintaining self-renewal of mouse embryonic stem cells
Cheng-Chung Wu1, Hong-Jin Wu, Chia-Hui Wang
1a Graduate Institute of Life Sciences; National Defense Medical Center ; Taipei , Taiwan.
Abstract:
Mouse embryonic stem cells (ES cells) can proliferate indefinitely. To identify potential signals involved in suppression of self-renewal, we previously screened a kinase/phosphatase expression library in ES cells, and observed that inhibition of Dual Leucine zipper-bearing Kinase (DLK) increased relative cell numbers. DLK protein was detected in both the pluripotent and differentiated states of mouse ES cells while DLK kinase activity increased upon differentiation. Overexpression of DLK in mouse ES cells displayed reductions in relative cell/colony numbers and Nanog expression, suggesting a suppressive role of DLK in self-renewal. By examining protein sequences of DLK, we identified 2 putative Akt phosphorylation sites at S584 and T659. Blocking PI3K/Akt signaling with LY-294002 enhanced DLK kinase activity dramatically. We found that Akt interacts with and phosphorylates DLK. Mutations of DLK amino acid residues at putative Akt phosphorylation sites (S584A, T659A, or S584A and T659A) diminished the level of DLK phosphorylation. While the mutated DLKs (S584A, T659A, or S584A and T659A) were expressed, a further reduction in cell/colony numbers and Nanog expression appeared in mouse ES cells. In addition, these mutant DLKs (S584A, T659A, or S584A and T659A) exhibited more robust kinase activity and cell death compared to wild type DLK or green fluorescence (GFP) controls. In summary, our results show that DLK functions to suppress self-renewal of mouse ES cells and is restrained by Akt phosphorylation.
Insights
Dual Leucine zipper-bearing Kinase (DLK) suppresses self-renewal in mouse embryonic stem cells (ES cells). Akt phosphorylation restrains DLK activity, maintaining ES cell pluripotency and self-renewal.
Area of Science:
- Stem cell biology
- Molecular signaling
Background:
- Mouse embryonic stem cells (ES cells) possess indefinite self-renewal capacity.
- Identifying regulators of ES cell self-renewal is crucial for developmental biology and regenerative medicine.
Purpose of the Study:
- To investigate the role of Dual Leucine zipper-bearing Kinase (DLK) in regulating mouse ES cell self-renewal.
- To elucidate the mechanism by which Akt signaling influences DLK activity and its impact on ES cell pluripotency.
Main Methods:
- Screening of a kinase/phosphatase expression library in mouse ES cells.
- Overexpression and site-directed mutagenesis of DLK in ES cells.
- Analysis of DLK kinase activity, phosphorylation status, and interaction with Akt.
- Assessment of cell proliferation, colony formation, Nanog expression, and cell death.
Main Results:
- DLK overexpression reduced ES cell numbers and Nanog expression, indicating a suppressive role in self-renewal.
- Akt phosphorylates DLK at S584 and T659, inhibiting its kinase activity.
- Mutations preventing Akt phosphorylation of DLK enhanced its kinase activity, reduced cell numbers, decreased Nanog expression, and increased cell death.
Conclusions:
- DLK acts as a negative regulator of self-renewal in mouse ES cells.
- Akt-mediated phosphorylation of DLK is a key mechanism for restraining DLK activity and preserving ES cell pluripotency.
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