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Updated: Apr 29, 2026

Testing Targeted Therapies in Cancer using Structural DNA Alteration Analysis and Patient-Derived Xenografts
Published on: July 25, 2020
PTEN-deficient tumors depend on AKT2 for maintenance and survival
Y Rebecca Chin1, Xin Yuan2, Steven P Balk2
1Department of Pathology and.
Unlabelled:
Loss of PTEN is a common event in many cancers and leads to hyperactivation of the PI3K-AKT signaling pathway. The mechanisms by which AKT isoforms mediate signaling to phenotypes associated with PTEN inactivation in cancer have not been defined. Here, we show that AKT2 is exclusively required for PTEN-deficient prostate tumor spheroid maintenance, whereas AKT1 is dispensable. shRNA silencing of AKT2 but not AKT1 promotes regression of prostate cancer xenografts. Mechanistically, we show that AKT2 silencing upregulates p21 and the proapoptotic protein BAX and downregulates the insulin-like growth factor receptor-1. We also show that p21 is an effector of AKT2 in mediating prostate tumor maintenance. Moreover, AKT2 is also exclusively required for the maintenance and survival of other PTEN-deficient solid tumors, including breast cancer and glioblastoma. These findings identify a specific function for AKT2 in mediating survival of PTEN-deficient tumors and provide a rationale for developing therapeutics targeting AKT2.
Significance:
Depletion of AKT2, but not AKT1, induces potent tumor regression in PTEN-deficient prostate cancer xenografts, concomitant with upregulation of p21, which may serve as a potential biomarker for screening AKT2 activity in clinical samples. The specific role of AKT2 in tumor maintenance provides a rationale for the development of isoform-specific inhibitors for patients with PTEN-deficient cancers.
Insights
Loss of PTEN in cancer hyperactivates the PI3K-AKT pathway. AKT2, not AKT1, is crucial for maintaining PTEN-deficient tumors, offering a therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Signaling
Background:
- Loss of PTEN is common in many cancers, leading to PI3K-AKT pathway hyperactivation.
- Mechanisms of AKT isoform signaling in PTEN-deficient cancers are not fully understood.
Purpose of the Study:
- To define the roles of AKT isoforms (AKT1 and AKT2) in PTEN-deficient cancers.
- To investigate AKT2 as a potential therapeutic target.
Main Methods:
- Utilized shRNA to silence AKT1 and AKT2 in PTEN-deficient prostate cancer models.
- Analyzed tumor spheroid maintenance and xenograft regression.
- Assessed changes in p21, BAX, and IGF-1R expression.
Main Results:
- AKT2, but not AKT1, is essential for PTEN-deficient prostate tumor spheroid maintenance.
- AKT2 silencing led to regression of prostate cancer xenografts.
- AKT2 silencing upregulated p21 and BAX, and downregulated IGF-1R.
- p21 acts as an effector of AKT2 in tumor maintenance.
- AKT2 is also required for other PTEN-deficient solid tumors (breast cancer, glioblastoma).
Conclusions:
- AKT2 depletion causes significant regression in PTEN-deficient tumors, unlike AKT1.
- Upregulation of p21 upon AKT2 depletion may serve as a biomarker.
- Targeting AKT2 offers a specific strategy for treating PTEN-deficient cancers.
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