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Trop-2 Induces Tumor Growth Through AKT and Determines Sensitivity to AKT Inhibitors
Emanuela Guerra1, Marco Trerotola1, Romina Tripaldi1
1Unit of Cancer Pathology, CeSI-MeT, University 'G. d'Annunzio,' Chieti, Italy.
Purpose:
Inhibition of AKT is a key target area for personalized cancer medicine. However, predictive markers of response to AKT inhibitors are lacking. Correspondingly, the AKT-dependent chain of command for tumor growth, which will mediate AKT-dependent therapeutic responses, remains unclear.
Experimental Design:
Proteomic profiling was utilized to identify nodal hubs of the Trop-2 cancer growth-driving network. Kinase-specific inhibitors were used to dissect Trop-2-dependent from Trop-2-independent pathways. In vitro assays, in vivo preclinical models, and case series of primary human breast cancers were utilized to define the mechanisms of Trop-2-driven growth and the mode of action of Trop-2-predicted AKT inhibitors.
Results:
Trop-2 and AKT expression was shown to be tightly coordinated in human breast cancers, with virtual overlap with AKT activation profiles at T308 and S473, consistent with functional interaction in vivo AKT allosteric inhibitors were shown to only block the growth of Trop-2-expressing tumor cells, both in vitro and in preclinical models, being ineffective on Trop-2-null cells. Consistently, AKT-targeted siRNA only impacted on Trop-2-expressing cells. Lentiviral downregulation of endogenous Trop-2 abolished tumor response to AKT blockade, indicating Trop-2 as a mandatory activator of AKT.
Conclusions:
Our findings indicate that the expression of Trop-2 is a stringent predictor of tumor response to AKT inhibitors. They also support the identification of target-activatory pathways, as efficient predictors of response in precision cancer therapy. Clin Cancer Res; 22(16); 4197-205. ©2016 AACR.
Insights
Trop-2 expression predicts response to AKT inhibitors in cancer. Targeting Trop-2-dependent pathways is key for personalized cancer therapy, improving treatment efficacy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- AKT pathway is a crucial target for personalized cancer medicine.
- Lack of predictive markers for AKT inhibitor response hinders effective treatment.
- The AKT-dependent signaling network driving tumor growth is not fully understood.
Purpose of the Study:
- Identify predictive markers for AKT inhibitor response.
- Elucidate the AKT-dependent signaling network in tumor growth.
- Determine the role of Trop-2 in mediating AKT-dependent tumor progression and therapeutic response.
Main Methods:
- Proteomic profiling to identify key nodes in the Trop-2 network.
- Utilized kinase inhibitors to differentiate Trop-2-dependent and independent pathways.
- In vitro assays, preclinical models, and human breast cancer analysis to define Trop-2 mechanisms and AKT inhibitor action.
Main Results:
- Trop-2 and AKT expression are coordinated in breast cancers, correlating with AKT activation.
- AKT inhibitors selectively block growth in Trop-2-expressing tumors, but not Trop-2-null cells.
- Downregulating Trop-2 abrogated tumor response to AKT blockade, confirming Trop-2 as an AKT activator.
Conclusions:
- Trop-2 expression is a strict predictor of tumor response to AKT inhibitors.
- Identifying target-activatory pathways like Trop-2 is essential for precision cancer therapy.
- This study provides a framework for developing targeted therapies based on predictive biomarkers.
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