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Modeling Spontaneous Metastatic Renal Cell Carcinoma mRCC in Mice Following Nephrectomy
Published on: April 29, 2014
mTOR inhibition induces compensatory, therapeutically targetable MEK activation in renal cell carcinoma
Sean T Bailey1, Bing Zhou2, Jeffrey S Damrauer1
1Lineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, United States of America; Department of Genetics, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, United States of America.
Abstract:
Rapamycin derivatives allosterically targeting mTOR are currently FDA approved to treat advanced renal cell carcinoma (RCC), and catalytic inhibitors of mTOR/PI3K are now in clinical trials for treating various solid tumors. We sought to investigate the relative efficacy of allosteric versus catalytic mTOR inhibition, evaluate the crosstalk between the mTOR and MEK/ERK pathways, as well as the therapeutic potential of dual mTOR and MEK inhibition in RCC. Pharmacologic (rapamycin and BEZ235) and genetic manipulation of the mTOR pathway were evaluated by in vitro assays as monotherapy as well as in combination with MEK inhibition (GSK1120212). Catalytic mTOR inhibition with BEZ235 decreased proliferation and increased apoptosis better than allosteric mTOR inhibition with rapamycin. While mTOR inhibition upregulated MEK/ERK signaling, concurrent inhibition of both pathways had enhanced therapeutic efficacy. Finally, primary RCC tumors could be classified into subgroups [(I) MEK activated, (II) Dual MEK and mTOR activated, (III) Not activated, and (IV) mTOR activated] based on their relative activation of the PI3K/mTOR and MEK pathways. Patients with mTOR only activated tumors had the worst prognosis. In summary, dual targeting of the mTOR and MEK pathways in RCC can enhance therapeutic efficacy and primary RCC can be subclassified based on their relative levels of mTOR and MEK activation with potential therapeutic implications.
Insights
Dual inhibition of mTOR and MEK pathways shows enhanced efficacy in renal cell carcinoma (RCC). This approach, alongside pathway-specific tumor subclassification, offers improved therapeutic strategies for RCC patients.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- mTOR inhibitors are FDA-approved for advanced renal cell carcinoma (RCC).
- Catalytic mTOR/PI3K inhibitors are in clinical trials for solid tumors.
- Understanding mTOR pathway crosstalk with MEK/ERK is crucial for novel therapies.
Purpose of the Study:
- Compare allosteric vs. catalytic mTOR inhibition efficacy in RCC.
- Investigate mTOR and MEK/ERK pathway crosstalk.
- Evaluate dual mTOR and MEK inhibition therapeutic potential in RCC.
Main Methods:
- Utilized pharmacologic (rapamycin, BEZ235) and genetic mTOR manipulation.
- Assessed monotherapy and combination treatments with MEK inhibitor (GSK1120212).
- Classified primary RCC tumors into subgroups based on PI3K/mTOR and MEK pathway activation.
Main Results:
- Catalytic mTOR inhibition (BEZ235) was more effective than allosteric (rapamycin).
- mTOR inhibition upregulated MEK/ERK signaling.
- Combined mTOR and MEK inhibition demonstrated enhanced therapeutic efficacy.
- RCC tumors were subclassified into four distinct groups based on pathway activation.
Conclusions:
- Dual targeting of mTOR and MEK pathways enhances therapeutic efficacy in RCC.
- RCC subclassification based on PI3K/mTOR and MEK activation has therapeutic implications.
- Patients with mTOR-only activated tumors exhibited the poorest prognosis.
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