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Repressing Gene Transcription by Redirecting Cellular Machinery with Chemical Epigenetic Modifiers
Published on: September 20, 2018
Transcriptional changes induced by epigenetic therapy with hydralazine and magnesium valproate in cervical carcinoma
Erick De la Cruz-Hernández1, Carlos Perez-Plasencia, Enrique Pérez-Cardenas
1Unidad de Investigación Biomédica en Cáncer, Instituto de Investigaciones Biomédicas (IIB), Universidad Nacional Autonóma de Mexico (UNAM), Instituto Nacional de Cancerología (INCan), Mexico City, Mexico.
Abstract:
Aberrant DNA methylation and histone deacetylation participate in cancer development and progression; hence, their reversal by inhibitors of DNA methylation and histone deacetylases is a promising cancer therapy. Experimental data demonstrate that these inhibitors in combination do not only show synergy in antitumor effects but also in whole genome global expression. Ten pairs of pre- and post-treatment cervical tumor samples were analyzed by microarray analysis. Treatment for seven days with hydralazine and valproate (HV) in patients up-regulated 964 genes. The two pathways possessing the highest number of up-regulated genes comprised the ribosome protein and the oxidative phosphorylation pathways, followed by MAPK signaling, tight junction, adherens junction, actin cytoskeleton, cell cycle, focal adhesion, apoptosis, proteasome, Wnt signaling, and antigen processing and presentation pathways. Up-regulated genes by HV, clustered with down-regulated genes in untreated primary cervical carcinomas and were more alike as compared with up-regulated genes from untreated patients in terms of gene ontology. Increased acetylated p53 was also observed. Epigenetic therapy with HV leads to gene reactivation in primary tumors of cervical cancer patients as well as protein acetylation. A number of these reactivated genes have a definitive role as a tumor suppressors. The global expression pattern induced by HV suggests this therapy has an impact on pathways related to energy production which may promote apoptosis.
Insights
Epigenetic therapy combining hydralazine and valproate (HV) reactivates tumor suppressor genes in cervical cancer. This approach impacts energy production pathways, potentially promoting apoptosis and offering a promising new cancer treatment.
Area of Science:
- Oncology
- Epigenetics
- Molecular Biology
Background:
- Aberrant DNA methylation and histone deacetylation are key drivers in cancer development.
- Reversing these epigenetic alterations using specific inhibitors presents a promising therapeutic strategy.
Purpose of the Study:
- To investigate the effects of combined DNA methylation and histone deacetylase inhibitors (hydralazine and valproate) on gene expression in cervical cancer.
- To analyze the impact of this epigenetic therapy on global gene expression patterns and specific cellular pathways.
Main Methods:
- Microarray analysis of ten paired pre- and post-treatment cervical tumor samples.
- Treatment with hydralazine and valproate (HV) for seven days.
- Gene ontology and pathway analysis of differentially expressed genes.
Main Results:
- HV treatment up-regulated 964 genes, notably those in ribosome protein and oxidative phosphorylation pathways.
- Reactivated genes showed similarities to down-regulated genes in untreated tumors, suggesting tumor suppressor gene restoration.
- Increased p53 acetylation and impact on energy production pathways, including those promoting apoptosis, were observed.
Conclusions:
- Epigenetic therapy with hydralazine and valproate effectively reactivates gene expression in cervical cancer.
- This therapy influences critical pathways like energy production and apoptosis, with potential tumor suppressor gene restoration.
- HV therapy demonstrates a significant impact on the global gene expression profile, offering a novel therapeutic avenue.
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