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Published on: March 29, 2019
Differential mTOR pathway profiles in bladder cancer cell line subtypes to predict sensitivity to mTOR inhibition
Andrew M Hau1, Manando Nakasaki1, Kazufumi Nakashima1
1Department of Pathology, University of California, San Diego, La Jolla, CA.
Background:
Molecular classification of bladder cancer has been increasingly proposed as a potential tool to predict clinical outcomes and responses to chemotherapy. Here we focused on mechanistic target of rapamycin (mTOR) inhibition as a chemotherapeutic strategy and characterized the expression profile of mTOR signaling targets in representative bladder cancer cell lines from basal, luminal, and either basal/luminal ("non-type") molecular subtypes.
Materials And Methods:
Protein and mRNA expression of mTOR signaling components from representative luminal (RT4 and RT112), basal (SCaBER and 5637), and nontype (T24 and J82) bladder cancer cell line subtypes were determined by Western blot and database mining analysis of the Cancer Cell Line Encyclopedia. Cell viability following treatment with either, Torin-2 or KU-0063794, 2 dual mTOR complex 1/2 inhibitors, was determined by MTT assay. Immunoblot analysis of cells treated with Torin-2 or KU-0063794 was performed to determine the effects of mTOR inhibition on expression and phosphorylation status of mTOR signaling components, Akt, 4E-BP1, and ribosomal protein S6.
Results:
Molecular subtypes of bladder cancer cell lines each exhibited a distinct pattern of expression of mTOR-associated genes and baseline phosphorylation level of Akt and 4E-BP1. Cells with low levels of Akt Ser-473 phosphorylation were more resistant to the cytotoxic effects of mTOR inhibition with Torin-2, but not KU-0063794. Exposure to Torin-2 and KU-0063794 both potently and rapidly inhibited phosphorylation of Akt Ser-473 and Thr-308, and 4E-BP1 T37/46 in cell lines that included basal and nontype subtypes.
Conclusions:
Differential gene expression and protein activity associated with mTOR signaling is observed among bladder cancer cell lines stratified into basal, luminal, and nontype subtypes. Urothelial carcinomas characterized by high baseline Akt Ser-473 phosphorylation may be best suited for targeted mTOR therapies.
Insights
Bladder cancer subtypes show distinct mechanistic target of rapamycin (mTOR) signaling. High Akt Ser-473 phosphorylation in urothelial carcinomas may indicate suitability for targeted mTOR therapies.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Molecular classification of bladder cancer is crucial for predicting treatment outcomes.
- Mechanistic target of rapamycin (mTOR) inhibition is a potential chemotherapeutic strategy.
- This study investigates mTOR signaling targets across different bladder cancer molecular subtypes.
Purpose of the Study:
- To characterize the expression profile of mTOR signaling targets in basal, luminal, and non-type bladder cancer cell lines.
- To evaluate the efficacy of dual mTOR complex 1/2 inhibitors (Torin-2 and KU-0063794) in these cell lines.
- To determine the relationship between baseline mTOR pathway activity and response to mTOR inhibition.
Main Methods:
- Western blot and database analysis (Cancer Cell Line Encyclopedia) to assess protein and mRNA expression of mTOR components.
- MTT assays to determine cell viability after treatment with Torin-2 or KU-0063794.
- Immunoblot analysis to examine the impact of mTOR inhibition on key signaling proteins (Akt, 4E-BP1, S6).
Main Results:
- Bladder cancer cell line subtypes displayed unique mTOR-associated gene expression and baseline Akt/4E-BP1 phosphorylation patterns.
- Cell lines with low Akt Ser-473 phosphorylation showed resistance to Torin-2 but not KU-0063794.
- Both inhibitors effectively reduced phosphorylation of Akt and 4E-BP1 in basal and non-type cell lines.
Conclusions:
- Differential mTOR signaling activity exists among bladder cancer molecular subtypes.
- Urothelial carcinomas with high baseline Akt Ser-473 phosphorylation are potential candidates for mTOR-targeted therapies.
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