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Published on: August 23, 2024
AKT methylation by SETDB1 promotes AKT kinase activity and oncogenic functions
Jianping Guo1,2, Xiangpeng Dai2,3, Benoit Laurent4
1The First Affiliated Hospital, Sun Yat-sen University, Guangzhou, China.
Abstract:
Aberrant activation of AKT disturbs the proliferation, survival and metabolic homeostasis of various human cancers. Thus, it is critical to understand the upstream signalling pathways governing AKT activation. Here, we report that AKT undergoes SETDB1-mediated lysine methylation to promote its activation, which is antagonized by the Jumonji-family demethylase KDM4B. Notably, compared with wild-type mice, mice harbouring non-methylated mutant Akt1 not only exhibited reduced body size but were also less prone to carcinogen-induced skin tumours, in part due to reduced AKT activation. Mechanistically, the interaction of phosphatidylinositol (3,4,5)-trisphosphate with AKT facilitates its interaction with SETDB1 for subsequent AKT methylation, which in turn sustains AKT phosphorylation. Pathologically, genetic alterations, including SETDB1 amplification, aberrantly promote AKT methylation to facilitate its activation and oncogenic functions. Thus, AKT methylation is an important step, synergizing with PI3K signalling to control AKT activation. This suggests that targeting SETDB1 signalling could be a potential therapeutic strategy for combatting hyperactive AKT-driven cancers.
Insights
AKT (also known as protein kinase B) methylation by SET domain bifurcated 1 (SETDB1) promotes its activation, driving cancer. This process is reversed by KDM4B, suggesting SETDB1 as a therapeutic target for AKT-driven cancers.
Area of Science:
- Molecular Biology
- Cancer Biology
- Biochemistry
Background:
- Aberrant AKT activation is implicated in human cancers, affecting proliferation, survival, and metabolism.
- Understanding the upstream pathways controlling AKT activation is crucial for cancer therapy.
Purpose of the Study:
- To investigate the role of post-translational modifications in regulating AKT activation.
- To elucidate the mechanism by which AKT activation is controlled and its implications in cancer.
Main Methods:
- Investigated AKT methylation using biochemical assays.
- Utilized mouse models with non-methylated Akt1 mutants.
- Analyzed genetic alterations in cancer patients.
Main Results:
- AKT undergoes SETDB1-mediated lysine methylation, enhancing its activation.
- KDM4B antagonizes AKT methylation.
- Non-methylated Akt1 mutant mice showed reduced body size and tumor susceptibility.
- SETDB1 amplification correlates with increased AKT methylation and oncogenic function.
Conclusions:
- AKT methylation is a key regulatory step in AKT activation, synergizing with PI3K signaling.
- Targeting SETDB1 offers a potential therapeutic strategy for cancers driven by hyperactive AKT.
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