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Updated: May 27, 2026

Development and Application of Rapamycin-regulated Tyrosine Phosphatases
Published on: September 6, 2024
Targeting notch pathway enhances rapamycin antitumor activity in pancreas cancers through PTEN phosphorylation
Kevin Vo1, Barushi Amarasinghe, Kay Washington
1College of Pharmacy, The University of Tennessee, Memphis, TN, USA.
Background:
Pancreas cancer is one of most aggressive human cancers with the survival rate for patients with metastatic pancreas cancer at 5-6 months. The poor survival demonstrates a clear need for better target identification, drug development and new therapeutic strategies. Recent discoveries have shown that the role for Notch pathway is important in both development and cancer. Its contribution to oncogenesis also involves crosstalks with other growth factor pathways, such as Akt and its modulator, PTEN. The mounting evidence supporting a role for Notch in cancer promotion and survival suggests that targeting this pathway alone or in combination with other therapeutics represents a promising therapeutic strategy.
Results:
Using a pancreas cancer tissue microarray, we noted that Jagged1, Notch3 and Notch4 are overexpressed in pancreas tumors (26%, 84% and 31% respectively), whereas Notch1 is expressed in blood vessels. While there was no correlation between Notch receptor expression and survival, stage or tumor grade, Notch3 was associated with Jagged1 and EGFR expression, suggesting a unique relationship between Notch3 and Jagged1. Inhibition of the Notch pathway genetically and with gamma-secretase inhibitor (GSI) resulted in tumor suppression and enhanced cell death. The observed anti-tumor activity appeared to be through Akt and modulation of PTEN phosphorylation. We discovered that transcriptional regulation of RhoA by Notch is important for PTEN phosphorylation. Finally, the mTOR inhibitor Rapamycin enhanced the effect of GSI on RhoA expression, resulting in down regulation of phospho-Akt and increased in vitro tumor cytotoxity.
Conclusions:
Notch pathway plays an important role in maintaining pancreas tumor phenotype. Targeting this pathway represents a reasonable strategy for the treatment of pancreas cancers. Notch modulates the Akt pathway through regulation of PTEN phosphorylation, an observation that has not been made previously. Furthermore, we discovered that this regulation is dependent on RhoA/Rock1 activation. Enhanced phospho-Akt suppression when GSI is combined with rapamycin suggests that targeting both pathways will lead to a greater efficacy in the treatment of patients with pancreas cancer.
Insights
Targeting the Notch pathway, crucial for pancreas cancer survival, shows promise. Inhibiting Notch and mTOR pathways together effectively suppresses tumor growth by downregulating phospho-Akt.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Pancreas cancer has a poor prognosis, necessitating novel therapeutic strategies.
- The Notch pathway is implicated in cancer development and survival, interacting with growth factor pathways like Akt and PTEN.
- Targeting the Notch pathway is a potential therapeutic approach for pancreas cancer.
Purpose of the Study:
- To investigate the role of the Notch pathway in pancreas cancer.
- To explore the relationship between Notch signaling, Akt, and PTEN in pancreas tumors.
- To evaluate the therapeutic potential of inhibiting the Notch pathway, alone and in combination with other agents.
Main Methods:
- Analysis of pancreas cancer tissue microarrays for Notch receptor and ligand expression.
- Inhibition of the Notch pathway using genetic methods and a gamma-secretase inhibitor (GSI).
- Assessment of downstream effects on Akt and PTEN phosphorylation, and RhoA regulation.
- Combination therapy studies with GSI and the mTOR inhibitor Rapamycin.
Main Results:
- Jagged1, Notch3, and Notch4 were overexpressed in pancreas tumors; Notch1 was found in blood vessels.
- Notch3 expression correlated with Jagged1 and EGFR.
- Notch pathway inhibition led to tumor suppression and cell death, mediated by Akt and PTEN phosphorylation modulation.
- Notch regulates PTEN phosphorylation via transcriptional control of RhoA.
- Combination of GSI and Rapamycin enhanced tumor cell killing by downregulating phospho-Akt.
Conclusions:
- The Notch pathway is vital for maintaining pancreas tumor characteristics.
- Targeting the Notch pathway is a viable strategy for pancreas cancer treatment.
- Notch modulates the Akt pathway through RhoA/Rock1-dependent regulation of PTEN phosphorylation.
- Combined inhibition of Notch and mTOR pathways offers enhanced therapeutic efficacy.
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