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Updated: Nov 8, 2025

Assays for Validating Histone Acetyltransferase Inhibitors
Published on: August 6, 2020
Epigenetic modulation and understanding of HDAC inhibitors in cancer therapy
M Janaki Ramaiah1, Anjana Devi Tangutur2, Rajasekhar Reddy Manyam3
1Laboratory of Functional genomics and Disease Biology, School of Chemical and Biotechnology, SASTRA Deemed University, Thanjavur 613401, Tamil Nadu, India.
Abstract:
The role of genetic and epigenetic factors in tumor initiation and progression is well documented. Histone deacetylases (HDACs), histone methyl transferases (HMTs), and DNA methyl transferases. (DNMTs) are the main proteins that are involved in regulating the chromatin conformation. Among these, histone deacetylases (HDAC) deacetylate the histone and induce gene repression thereby leading to cancer. In contrast, histone acetyl transferases (HATs) that include GCN5, p300/CBP, PCAF, Tip 60 acetylate the histones. HDAC inhibitors are potent drug molecules that can induce acetylation of histones at lysine residues and induce open chromatin conformation at tumor suppressor gene loci and thus resulting in tumor suppression. The key processes regulated by HDAC inhibitors include cell-cycle arrest, chemo-sensitization, apoptosis induction, upregulation of tumor suppressors. Even though FDA approved drugs are confined mainly to haematological malignancies, the research on HDAC inhibitors in glioblastoma multiforme and triple negative breast cancer (TNBC) are providing positive results. Thus, several combinations of HDAC inhibitors along with DNA methyl transferase inhibitors and histone methyl transferase inhibitors are in clinical trials. This review focuses on how HDAC inhibitors regulate the expression of coding and non-coding genes with specific emphasis on their anti-cancer potential.
Insights
Histone deacetylase (HDAC) inhibitors reverse gene repression in cancer by promoting histone acetylation. These drugs show promise in treating various cancers, including glioblastoma and triple-negative breast cancer.
Area of Science:
- Epigenetics
- Cancer Biology
- Molecular Oncology
Background:
- Genetic and epigenetic factors drive tumor development.
- Histone deacetylases (HDACs) repress genes, contributing to cancer.
- Histone acetyl transferases (HATs) acetylate histones, promoting gene expression.
Purpose of the Study:
- To review the anti-cancer potential of HDAC inhibitors.
- To explore how HDAC inhibitors regulate gene expression.
- To highlight HDAC inhibitors' role in tumor suppression.
Main Methods:
- Review of literature on HDAC inhibitors and their mechanisms.
- Analysis of HDAC inhibitors' effects on chromatin conformation.
- Examination of HDAC inhibitors' impact on coding and non-coding genes.
Main Results:
- HDAC inhibitors induce histone acetylation, opening chromatin and activating tumor suppressor genes.
- HDAC inhibitors trigger cell-cycle arrest, chemo-sensitization, and apoptosis.
- Positive results are emerging for HDAC inhibitors in glioblastoma and triple-negative breast cancer.
Conclusions:
- HDAC inhibitors represent a promising therapeutic strategy for various cancers.
- Combinations of HDAC inhibitors with DNMT and HMT inhibitors are under clinical investigation.
- HDAC inhibitors offer significant anti-cancer potential by modulating gene expression.
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