Related Experiment Video
Updated: Feb 2, 2026

An Orthotopic Murine Model of Human Prostate Cancer Metastasis
Published on: September 18, 2013
AKT Inhibition Modulates H3K4 Demethylase Levels in PTEN-Null Prostate Cancer
Mohammad Imran Khan1,2,3, Abid Hamid3,4, Suvasmita Rath3
1Department of Biochemistry, Faculty of Science, King Abdulaziz University, Jeddah, Saudi Arabia. mad4res@gmail.com.
Abstract:
Hyperactivated AKT kinase due to loss of its negative regulator PTEN influences many aspects of cancer biology, including chromatin. AKT primarily regulates acetyl-CoA production and phosphorylates many histone-modulating enzymes, resulting in their activation or inhibition. Therefore, understanding the therapeutic impact of AKT inhibition on chromatin-related events is essential. Here, we report that AKT inhibition in prostate-specific PTEN knockout mice significantly induces di- and trimethylation of H3K4 with concomitant reduction in H3K9 acetylation. Mechanistically, we observed that AKT inhibition reduces expression of the H3K4 methylation-specific histone demethylases KDM5 family, especially KDM5B expression at transcriptional levels. Furthermore, we observed that AKT negatively regulates miR-137 levels, which transcriptionally represses KDM5B expression. Overexpression of miR-137 significantly reduced KDM5B and increased H3K4 methylation levels but failed to change AKT phosphorylation. Overall, we observed that AKT transcriptionally regulates KDM5B mainly via repression of miR-137. Our data identify a mechanism by which AKT kinase modulates the prostate cancer epigenome through regulating H3K4 methylation. Additional studies on AKT inhibition-mediated induction of H3K4 methylation will help in designing strategies to enhance the therapeutic efficacy of PI3K/AKT inhibitors.
Insights
AKT inhibition in prostate cancer epigenetics reduces KDM5B expression via miR-137, increasing H3K4 methylation. This finding is crucial for developing targeted PI3K/AKT inhibitor therapies.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- Hyperactivated AKT kinase, often due to PTEN loss, drives cancer progression.
- AKT influences chromatin by regulating acetyl-CoA production and histone-modifying enzymes.
- Understanding AKT's impact on chromatin is vital for cancer therapy.
Purpose of the Study:
- To investigate the effects of AKT inhibition on chromatin modifications in prostate cancer.
- To elucidate the molecular mechanisms underlying AKT's regulation of histone methylation.
Main Methods:
- Utilized prostate-specific PTEN knockout mouse models.
- Analyzed histone modifications (H3K4 di-/trimethylation, H3K9 acetylation) following AKT inhibition.
- Investigated the role of KDM5 family demethylases and miR-137 in regulating H3K4 methylation.
Main Results:
- AKT inhibition increased H3K4 di- and trimethylation and decreased H3K9 acetylation.
- AKT inhibition reduced the expression of KDM5 family demethylases, particularly KDM5B.
- AKT negatively regulated miR-137, which represses KDM5B transcriptionally.
Conclusions:
- AKT kinase transcriptionally regulates KDM5B, primarily through repression of miR-137.
- This mechanism highlights how AKT modulates the prostate cancer epigenome via H3K4 methylation.
- Further research can inform strategies to enhance PI3K/AKT inhibitor efficacy.
Related Concept Videos
Feedback Inhibition
PI3K/mTOR/AKT Signaling Pathway
Leveling Effect
Enzyme Inhibition
High-Level and Low-Level Awareness
Levels of Organization
Molecules Are Composed of Atoms, and Biomolecules Are Assembled from Molecules:
The most basic levels include atoms, molecules, and biomolecules. Atoms, the smallest unit of ordinary matter, are composed of a nucleus and electrons. Molecules...

