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A novel dual AMPK activator/mTOR inhibitor inhibits thyroid cancer cell growth
Robert L Plews1, Adlina Mohd Yusof, Chaojie Wang
1Division of Surgical Oncology (R.L.P., J.E.P.), Department of Surgery, Division of Endocrinology, Diabetes, and Metabolism (A.M.Y., C.W., M.S., M.D.R.), Department of Medicine, The Ohio State University, Arthur G. James Comprehensive Cancer Center, and Richard G. Solove Research Institute, and Division of Medicinal Chemistry (C.-S.C.), College of Pharmacy, Columbus, Ohio 43210; and Center for Biostatistics (X.Z.), The Ohio State University, Columbus, Ohio 43221.
Context:
Activated AMP protein kinase (AMPK) is a key regulator of intracellular energy homeostasis and may also function as a tumor suppressor by inhibiting cell growth through suppression of mammalian target of rapamycin (mTOR)/p70S6K signaling. AMPK activating agents, such as metformin and 5-aminoimidazole-4-carboxamide-ribonucleoside, have been demonstrated to inhibit thyroid cancer cell growth in in vitro and in vivo models. OSU-53, a recently developed AMPK activator, was previously shown to exhibit both in vitro and in vivo antitumor activity against aggressive breast cancer cell lines and their xenografts in nude mice.
Objective:
The objective of the study was to assess the in vitro effects of OSU-53 treatment in a panel of thyroid cancer cells.
Design:
Experiments were performed to determine the effects of OSU-53 on cell growth, oncogenic signaling, apoptosis, autophagy, and cell rescue after selective knockdown of AMPK.
Results:
OSU-53 inhibited in vitro cell growth of all seven thyroid cancer cells tested and induced activation of AMPK. Cell lines with activating mutations in RAS or BRAF, compared with cells with phosphatase and tensin homolog deleted from chromosome 10 null and RET/papillary thyroid carcinoma mutations, were more sensitive to drug treatment and demonstrated a more robust AMPK activation, inhibition of mTOR signaling, and autophagy stimulation. After selective knockdown of AMPK, cell rescue from OSU-53 treatment was not observed. We demonstrated an off-target effect of direct mTOR inhibition by OSU-53. Increased autophagy was observed in cells with activation RAS or BRAF mutations.
Conclusions:
OSU-53, a novel dual-AMPK activator/mTOR inhibitor, effectively inhibits growth in a variety of thyroid cancer cell lines and is most potent in cells with activating mutations in RAS or BRAF.
Insights
OSU-53, an AMP protein kinase (AMPK) activator, inhibits thyroid cancer cell growth. It is most effective in tumors with RAS or BRAF mutations, showing dual AMPK activation and mTOR inhibition.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- AMP protein kinase (AMPK) regulates cellular energy and acts as a tumor suppressor by inhibiting mammalian target of rapamycin (mTOR) signaling.
- Metformin and other AMPK activators show promise in inhibiting thyroid cancer growth.
- OSU-53, a novel AMPK activator, has demonstrated antitumor activity in breast cancer models.
Purpose of the Study:
- To evaluate the in vitro efficacy of OSU-53 in various thyroid cancer cell lines.
- To investigate the effects of OSU-53 on cancer cell growth, signaling pathways, apoptosis, and autophagy.
Main Methods:
- Treatment of seven thyroid cancer cell lines with OSU-53.
- Assessment of cell growth, AMPK activation, mTOR signaling, apoptosis, and autophagy.
- Selective knockdown of AMPK to determine its role in OSU-53's effects.
Main Results:
- OSU-53 inhibited growth in all tested thyroid cancer cell lines and activated AMPK.
- Cell lines with RAS or BRAF mutations were more sensitive to OSU-53, exhibiting stronger AMPK activation, mTOR inhibition, and autophagy.
- OSU-53 demonstrated direct mTOR inhibition, and autophagy was increased in cells with RAS/BRAF mutations.
Conclusions:
- OSU-53 is a dual AMPK activator and mTOR inhibitor that effectively inhibits thyroid cancer cell growth.
- The drug is most potent against thyroid cancer cells harboring activating RAS or BRAF mutations.
- AMPK activation plays a crucial role in OSU-53's anti-cancer effects.
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