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Published on: July 27, 2014
Targeting Histone Deacetylase Activity to Arrest Cell Growth and Promote Neural Differentiation in Ewing Sarcoma
Bárbara Kunzler Souza1,2, Patrícia Luciana da Costa Lopez3, Pâmela Rossi Menegotto1,2
1Cancer and Neurobiology Laboratory, Experimental Research Center, Clinical Hospital (CPE-HCPA), Federal University of Rio Grande do Sul, Porto Alegre, RS, 90035-003, Brazil.
Abstract:
There is an urgent need for advances in the treatment of Ewing sarcoma (EWS), an aggressive childhood tumor with possible neuroectodermal origin. Inhibition of histone deacetylases (HDAC) can revert aberrant epigenetic states and reduce growth in different experimental cancer types. Here, we investigated whether the potent HDAC inhibitor, sodium butyrate (NaB), has the ability to reprogram EWS cells towards a more differentiated state and affect their growth and survival. Exposure of two EWS cell lines to NaB resulted in rapid and potent inhibition of HDAC activity (1 h, IC50 1.5 mM) and a significant arrest of cell cycle progression (72 h, IC50 0.68-0.76 mM), marked by G0/G1 accumulation. Delayed cell proliferation and reduced colony formation ability were observed in EWS cells after long-term culture. NaB-induced effects included suppression of cell proliferation accompanied by reduced transcriptional expression of the EWS-FLI1 fusion oncogene, decreased expression of key survival and pluripotency-associated genes, and re-expression of the differentiation neuronal marker βIII-tubulin. Finally, NaB reduced c-MYC levels and impaired survival in putative EWS cancer stem cells. Our findings support the use of HDAC inhibition as a strategy to impair cell growth and survival and to reprogram EWS tumors towards differentiation. These results are consistent with our previous studies indicating that HDis can inhibit the growth and modulate differentiation of cells from other types of childhood pediatric tumors possibly originating from neural stem cells.
Insights
Sodium butyrate (NaB), a histone deacetylase (HDAC) inhibitor, effectively halts Ewing sarcoma (EWS) cell growth and triggers differentiation. This study shows NaB
Area of Science:
- Oncology
- Epigenetics
- Molecular Biology
Background:
- Ewing sarcoma (EWS) is an aggressive pediatric tumor requiring novel treatments.
- Histone deacetylase (HDAC) inhibition can reverse aberrant epigenetic states in cancers.
- Sodium butyrate (NaB) is a potent HDAC inhibitor with anti-cancer potential.
Purpose of the Study:
- To investigate NaB's ability to reprogram EWS cells towards differentiation.
- To assess NaB's impact on EWS cell growth and survival.
Main Methods:
- Exposure of EWS cell lines to NaB.
- Assay of HDAC activity, cell cycle progression, proliferation, and colony formation.
- Analysis of gene expression including EWS-FLI1, survival/pluripotency genes, and βIII-tubulin.
- Evaluation of NaB's effect on EWS cancer stem cells.
Main Results:
- NaB potently inhibited HDAC activity and arrested cell cycle progression (G0/G1 phase).
- NaB delayed proliferation, reduced colony formation, and suppressed EWS-FLI1 oncogene expression.
- NaB decreased survival and pluripotency gene expression while re-expressing βIII-tubulin.
- NaB reduced c-MYC levels and impaired survival in EWS cancer stem cells.
Conclusions:
- HDAC inhibition via NaB is a promising strategy to inhibit EWS cell growth and survival.
- NaB can reprogram EWS tumors towards a more differentiated state.
- These findings support HDAC inhibitors for treating pediatric tumors of neuroectodermal origin.
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