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.

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.