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Published on: September 12, 2019
Plk1-Mediated Phosphorylation of TSC1 Enhances the Efficacy of Rapamycin
Zhiguo Li1, Yifan Kong1, Longzhen Song1
1Department of Biochemistry, Purdue University, West Lafayette, Indiana.
Abstract:
The AKT/TSC/mTOR axis is an important pathway controlling cell growth, survival, and proliferation in response to extracellular cues. Recently, it was reported that AKT activity fluctuates across the cell cycle. However, it remains unclear whether downstream targets of AKT are also regulated by the cell cycle. Here, we report that mTORC1 activity inversely correlates with AKT activity during the cell cycle. Mechanistically, Plk1 phosphorylation of TSC1 at S467 and S578 interfered with TSC1/TSC2 binding, destabilized TSC1, promoted dissociation of the TSC complex from the lysosome, and eventually led to mTORC1 activation. Tumors derived from cancer cells expressing the TSC1-S467E/S578E mutant exhibited greater sensitivity to rapamycin than those expressing WT TSC1. Collectively, our data support a model in which Plk1, instead of AKT, regulates the TSC/mTORC1 pathway during mitosis, eventually regulating the efficacy of rapamycin.Significance: This seminal report shows that activation of mTORC1 can be independent of AKT during mitosis. Cancer Res; 78(11); 2864-75. ©2018 AACR.
Insights
Plk1, not AKT, controls mTORC1 activity during mitosis by phosphorylating TSC1. This finding reveals a new mechanism regulating cell growth and rapamycin efficacy in cancer therapy.
Area of Science:
- Cell Biology
- Molecular Oncology
- Signal Transduction
Background:
- The AKT/TSC/mTOR pathway is crucial for cell growth and survival.
- AKT activity varies across the cell cycle, but downstream regulation remains unclear.
Purpose of the Study:
- To investigate cell cycle regulation of AKT pathway targets.
- To elucidate the mechanism of mTORC1 regulation during mitosis.
Main Methods:
- Cell cycle analysis
- Western blotting
- Immunoprecipitation
- Tumor xenograft models
- Site-directed mutagenesis
Main Results:
- mTORC1 activity inversely correlates with AKT activity during the cell cycle.
- Plk1 phosphorylates TSC1 at S467 and S578, disrupting TSC1/TSC2 binding and activating mTORC1.
- TSC1 mutations (S467E/S578E) enhance tumor sensitivity to rapamycin.
Conclusions:
- Plk1, rather than AKT, regulates the TSC/mTORC1 pathway during mitosis.
- This regulation impacts rapamycin efficacy in cancer treatment.
- mTORC1 activation can be AKT-independent during mitosis.
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