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Published on: August 27, 2013
Switch in signaling control of mTORC1 activity after oncoprotein expression in thyroid cancer cell lines
Roberta Malaguarnera1, Kuen-Yuan Chen, Tae-Yong Kim
1Human Oncology and Pathogenesis Program (R.M., K.-Y.C., T.-Y.K., J.M.D., F.V., S.K.V., J.A.K., J.A.F.) and Department of Medicine (J.A.K., J.A.F.), Memorial Sloan-Kettering Cancer Center, New York, New York 10065; and Division of Endocrinology (B.O.), University of Cincinnati College of Medicine, Cincinnati, Ohio 45267.
Context:
Thyroid growth is regulated by TSH and requires mammalian target of rapamycin (mTOR). Thyroid cancers frequently exhibit mutations in MAPK and/or phosphoinositol-3-kinase-related kinase effectors.
Objective:
The objective of the study was to explore the contribution of RET/PTC, RAS, and BRAF to mTOR regulation and response to mTOR inhibitors.
Methods:
PCCL3 cells conditionally expressing RET/PTC3, HRAS(G12V), or BRAF(V600E) and human thyroid cancer cells harboring mutations of these genes were used to test pathways controlling mTOR and its requirement for growth.
Results:
TSH/cAMP-induced growth of PCCL3 cells requires mTOR, which is stimulated via protein kinase A in a MAPK kinase (MEK)- and AKT-independent manner. Expression of RET/PTC3, HRAS(G12V), or BRAF(V600E) in PCCL3 cells induces mTOR but does not entirely abrogate the cAMP-mediated control of its activity. Acute oncoprotein-induced mTOR activity is regulated by MEK and AKT, albeit to differing degrees. By contrast, mTOR was not activated by TSH/cAMP in human thyroid cancer cells. Tumor genotype did not predict the effects of rapamycin or the mTOR kinase inhibitor AZD8055 on growth, with the exception of a PTEN-null cell line. Selective blockade of MEK did not influence mTOR activity of BRAF or RAS mutant cells. Combined MEK and mTOR kinase inhibition was synergistic on growth of BRAF- and RAS-mutant thyroid cancer cells in vitro and in vivo.
Conclusion:
Thyroid cancer cells lose TSH/cAMP dependency of mTOR signaling and cell growth. mTOR activity is not decreased by the MEK or AKT inhibitors in the RAS or BRAF human thyroid cancer cell lines. This may account for the augmented effects of combining the mTOR inhibitors with selective antagonists of these oncogenic drivers.
Insights
Thyroid cancer cells lose TSH/cAMP dependency for growth, with mTOR signaling unaffected by MEK or AKT inhibitors. Combining mTOR inhibitors with specific antagonists shows synergistic effects on cancer cell growth.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- Thyroid growth is regulated by TSH and mammalian target of rapamycin (mTOR).
- Thyroid cancers often have mutations in MAPK and/or phosphoinositol-3-kinase-related kinase effectors.
Purpose of the Study:
- To investigate the role of RET/PTC, RAS, and BRAF in regulating mTOR.
- To determine the response of these pathways to mTOR inhibitors in thyroid cancer.
Main Methods:
- Utilized PCCL3 cells engineered to express RET/PTC3, HRAS(G12V), or BRAF(V600E).
- Examined human thyroid cancer cell lines with mutations in these genes.
- Assessed pathways controlling mTOR and its necessity for cell proliferation.
Main Results:
- TSH/cAMP-induced growth in PCCL3 cells requires mTOR, stimulated independently of MEK and AKT.
- Oncogenic RET/PTC3, HRAS(G12V), or BRAF(V600E) induced mTOR activity, but cAMP still influenced it.
- Human thyroid cancer cells with these mutations did not activate mTOR via TSH/cAMP.
- Combined MEK and mTOR kinase inhibition demonstrated synergistic effects on BRAF- and RAS-mutant thyroid cancer cell growth.
Conclusions:
- Thyroid cancer cells exhibit a loss of TSH/cAMP dependency for mTOR signaling and growth.
- MEK or AKT inhibitors did not reduce mTOR activity in RAS or BRAF mutant thyroid cancer cell lines.
- Combining mTOR inhibitors with antagonists of oncogenic drivers may enhance therapeutic efficacy.
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