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Published on: February 3, 2017
Pharmacological activation of SIRT6 triggers lethal autophagy in human cancer cells
Sara Iachettini1, Daniela Trisciuoglio2,3, Dante Rotili4
1Oncogenomic and Epigenetic Unit, IRCCS-Regina Elena National Cancer Institute, Via Elio Chianesi 53, 00144, Rome, Italy.
Abstract:
Sirtuin 6 (SIRT6) is a member of the NAD+-dependent class III deacetylase sirtuin family, which plays a key role in cancer by controlling transcription, genome stability, telomere integrity, DNA repair, and autophagy. Here we analyzed the molecular and biological effects of UBCS039, the first synthetic SIRT6 activator. Our data demonstrated that UBCS039 induced a time-dependent activation of autophagy in several human tumor cell lines, as evaluated by increased content of the lipidated form of LC3B by western blot and of autophagosomal puncta by microscopy analysis of GFP-LC3. UBCS039-mediated activation of autophagy was strictly dependent on SIRT6 deacetylating activity since the catalytic mutant H133Y failed to activate autophagy. At the molecular level, SIRT6-mediated autophagy was triggered by an increase of ROS levels, which, in turn, resulted in the activation of the AMPK-ULK1-mTOR signaling pathway. Interestingly, antioxidants were able to completely counteract UBCS039-induced autophagy, suggesting that ROS burst had a key role in upstream events leading to autophagy commitment. Finally, sustained activation of SIRT6 resulted in autophagy-related cell death, a process that was markedly attenuated using either a pan caspases inhibitor (zVAD-fmk) or an autophagy inhibitor (CQ). Overall, our results identified UBCS039 as an efficient SIRT6 activator, thereby providing a proof of principle that modulation of the enzyme can influence therapeutic strategy by enhancing autophagy-dependent cell death.
Insights
The first synthetic SIRT6 activator, UBCS039, effectively triggers autophagy and cancer cell death by increasing reactive oxygen species (ROS) and activating the AMPK-ULK1-mTOR pathway. This provides a novel therapeutic strategy targeting cancer cell death.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- Sirtuin 6 (SIRT6) is a NAD+-dependent deacetylase crucial for cancer progression, influencing transcription, genome stability, DNA repair, and autophagy.
- Modulating SIRT6 activity presents a potential therapeutic strategy for cancer treatment.
Purpose of the Study:
- To investigate the molecular and biological effects of UBCS039, the first synthetic SIRT6 activator.
- To determine if UBCS039 can activate autophagy and induce cancer cell death.
Main Methods:
- Utilized western blot and microscopy to evaluate autophagy activation (LC3B, GFP-LC3).
- Assessed the role of SIRT6 deacetylating activity using a catalytic mutant (H133Y).
- Investigated the involvement of reactive oxygen species (ROS) and the AMPK-ULK1-mTOR pathway.
Main Results:
- UBCS039 induced time-dependent autophagy in human tumor cell lines.
- Autophagy activation was dependent on SIRT6 deacetylating activity and increased ROS levels.
- Antioxidants counteracted UBCS039-induced autophagy, highlighting ROS's upstream role.
- Sustained SIRT6 activation led to autophagy-related cell death, partially inhibited by caspase and autophagy inhibitors.
Conclusions:
- UBCS039 is an effective SIRT6 activator, demonstrating proof of principle for modulating SIRT6 in cancer therapy.
- Enhanced autophagy-dependent cell death is a viable strategy for cancer treatment.
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