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Updated: May 8, 2026

Deacetylation Assays to Unravel the Interplay between Sirtuins (SIRT2) and Specific Protein-substrates
Published on: February 27, 2016
Sirtuin-2 activity is required for glioma stem cell proliferation arrest but not necrosis induced by resveratrol
Salwa Sayd1, Cécile Thirant, Elias A El-Habr
1Team Glial Plasticity, U894 Inserm, Université Paris Descartes, Paris, France.
Abstract:
Glioblastomas, the most common form of primary brain tumors, are the fourth cause of death by cancer in adults. Increasing evidences suggest that glioblastoma resistance to existing radio- and chemotherapies rely on glioblastoma stem cells (GSCs). GSCs are endowed with a unique combination of stem-like properties alike to normal neural stem cells (NSCs), and of tumor initiating properties. The natural polyphenol resveratrol is known to exert opposite actions on neural cells according to their normal or cancerous status. Here, we used resveratrol to explore the molecular mechanisms differing between GSCs and NSCs. We observed a dual action of resveratrol on GSCs: resveratrol blocked GSC proliferation up to 150 μM and induced their necrosis at higher doses. On the opposite, resveratrol had no effect on NSC behavior. To determine the mechanisms underlying resveratrol effects, we focused our attention on the family of NAD-dependent deacetylases sirtuins (SIRT). A member of this family, SIRT1, has been repetitively shown to constitute a preferential resveratrol target, at least in normal cells. Western blot analysis showed that SIRT1 and SIRT3 were expressed by both GSCs and NSCs whereas SIRT2 expression was restricted to GSCs. Pharmacological blockade of SIRT2 activity or down-regulation of SIRT2 expression with siRNAs counteracted the inhibitory effect of resveratrol on cell proliferation. On the contrary, inhibition of SIRT2 activity or expression did not counteract GSC necrosis observed in presence of high doses of resveratrol. Our results highlight SIRT2 as a novel target for altering GSC properties.
Insights
Resveratrol impacts glioblastoma stem cells (GSCs) by inhibiting proliferation and inducing necrosis. SIRT2 is identified as a key molecular target responsible for resveratrol's anti-GSC effects.
Area of Science:
- Neuro-oncology
- Molecular Biology
- Cancer Research
Background:
- Glioblastomas are aggressive brain tumors, with glioblastoma stem cells (GSCs) driving therapeutic resistance.
- GSCs possess stem-like and tumor-initiating properties, distinguishing them from normal neural stem cells (NSCs).
- Resveratrol, a natural polyphenol, exhibits differential effects on normal versus cancerous neural cells.
Purpose of the Study:
- To investigate the molecular mechanisms underlying resveratrol's distinct actions on GSCs and NSCs.
- To identify potential therapeutic targets within GSCs modulated by resveratrol.
Main Methods:
- Comparative analysis of resveratrol's effects on GSC and NSC proliferation and viability.
- Western blot analysis to assess the expression of sirtuin (SIRT) family members.
- Pharmacological inhibition and siRNA-mediated knockdown of SIRT2 to evaluate its role.
Main Results:
- Resveratrol inhibited GSC proliferation and induced necrosis at higher concentrations, with no effect on NSCs.
- SIRT2 expression was specific to GSCs, while SIRT1 and SIRT3 were present in both cell types.
- Blocking SIRT2 activity or expression counteracted resveratrol's antiproliferative effect on GSCs but not necrosis.
Conclusions:
- SIRT2 is a novel molecular target that mediates the antiproliferative effects of resveratrol on glioblastoma stem cells.
- Targeting SIRT2 may offer a strategy to overcome therapeutic resistance in glioblastomas.
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