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Updated: Aug 31, 2025

Assays for Validating Histone Acetyltransferase Inhibitors
Published on: August 6, 2020
Critical Functions of Histone Deacetylases (HDACs) in Modulating Inflammation Associated with Cardiovascular Diseases
Supaporn Kulthinee1, Naohiro Yano2, Shougang Zhuang2
1Cardiovascular and Metabolism Laboratories, Department of Surgery and Plastic Surgery, Rhode Island Hospital, Warren Alpert Medical School of Brown University, Providence, RI 02903, USA.
Insights
Histone deacetylases (HDACs) regulate gene expression and inflammation. This review explores their role in cardiovascular diseases and the therapeutic potential of HDAC inhibitors for treating these inflammatory conditions.
Area of Science:
- Molecular Biology
- Biochemistry
- Cardiovascular Medicine
Background:
- Histone deacetylases (HDACs) are enzymes crucial for regulating gene transcription, cell growth, and inflammatory responses.
- Inflammation is a key factor in the pathogenesis of cardiovascular diseases (CVDs).
- HDACs are implicated in regulating inflammatory gene expression relevant to CVDs.
Purpose of the Study:
- To review the role of HDACs in the pathophysiology of inflammation in cardiovascular disease.
- To discuss the function of HDACs in regulating atherosclerosis and CVDs.
- To explore the therapeutic potential of HDAC inhibitors for cardiovascular and inflammatory diseases.
Main Methods:
- Literature review of existing studies on HDACs, inflammation, and cardiovascular diseases.
- Analysis of the role of specific HDACs in inflammatory gene expression.
- Evaluation of the therapeutic implications of HDAC inhibitors.
Main Results:
- HDACs critically mediate the pathophysiology of inflammation in cardiovascular disease.
- HDACs are major regulators of inflammation and cardiovascular function.
- HDAC inhibitors demonstrate potential therapeutic benefits for CVDs.
Conclusions:
- HDACs play a significant role in cardiovascular inflammation and disease progression.
- Targeting HDACs with inhibitors offers a promising therapeutic strategy for CVDs and associated inflammatory conditions.
Abstract:
Histone deacetylases (HDACs) are a superfamily of enzymes that catalyze the removal of acetyl functional groups from lysine residues of histone and non-histone proteins. There are 18 mammalian HDACs, which are classified into four classes based on the primary homology with yeast HDACs. Among these groups, Class I and II HDACs play a major role in lysine deacetylation of the N-terminal histone tails. In mammals, HDACs play a pivotal role in the regulation of gene transcription, cell growth, survival, and proliferation. HDACs regulate the expression of inflammatory genes, as evidenced by the potent anti-inflammatory activity of pan-HDAC inhibitors, which were implicated in several pathophysiologic states in the inflammation process. However, it is unclear how each of the 18 HDAC proteins specifically contributes to the inflammatory gene expression. It is firmly established that inflammation and its inability to converge are central mechanisms in the pathogenesis of several cardiovascular diseases (CVDs). Emerging evidence supports the hypothesis that several different pro-inflammatory cytokines regulated by HDACs are associated with various CVDs. Based on this hypothesis, the potential for the treatment of CVDs with HDAC inhibitors has recently begun to attract attention. In this review, we will briefly discuss (1) pathophysiology of inflammation in cardiovascular disease, (2) the function of HDACs in the regulation of atherosclerosis and cardiovascular diseases, and (3) the possible therapeutic implications of HDAC inhibitors in cardiovascular diseases. Recent studies reveal that histone deacetylase contributes critically to mediating the pathophysiology of inflammation in cardiovascular disease. HDACs are also recognized as one of the major mechanisms in the regulation of inflammation and cardiovascular function. HDACs show promise in developing potential therapeutic implications of HDAC inhibitors in cardiovascular and inflammatory diseases.
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