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HDAC3 Mediates the Inflammatory Response and LPS Tolerance in Human Monocytes and Macrophages
Mohammed Ghiboub1,2, Jing Zhao1, Andrew Y F Li Yim2,3
1Tytgat Institute for Liver and Intestinal Research, Amsterdam Gastroenterology & Metabolism, Amsterdam University Medical Centers, University of Amsterdam, Amsterdam, Netherlands.
Insights
Histone deacetylase 3 inhibitors (HDAC3i) reduce inflammatory cytokine secretion in human monocytes and M1 macrophages, promoting endotoxin tolerance by decreasing TLR4/CD14 expression.
Area of Science:
- Immunology
- Molecular Biology
- Epigenetics
Background:
- Histone deacetylases (HDACs) regulate gene expression and are implicated in immune cell function.
- Understanding HDACs' role in human monocyte and macrophage responses is crucial for modulating inflammation.
Purpose of the Study:
- To investigate the effects of HDAC inhibitors (HDACi) on human monocyte and macrophage polarization, activation, and endotoxin tolerance.
- To determine the specific role of HDAC3 in modulating inflammatory responses and tolerance induction in human macrophages.
Main Methods:
- Human monocytes were treated with HDAC3 inhibitors (HDAC3i), HDAC6 inhibitors (HDAC6i), or pan-HDACi before polarization into M1 or M2 macrophages.
- Macrophage activation and cytokine secretion (TNFα, IL-6, p40) were assessed after LPS stimulation.
- Western blot and transcriptional profiling were used to analyze protein modifications, signaling pathways (STAT1), and gene expression (TLRs, TLR4/CD14).
Main Results:
- Pan-HDACi and HDAC3i significantly reduced cytokine secretion in monocytes and M1 macrophages but not in M2 macrophages.
- HDAC3i did not affect human macrophage polarization or IFNγ signaling, contrasting with findings in mouse models.
- HDAC3 inhibition or knockdown (siRNA) reinstated endotoxin tolerance in IFNγ-primed macrophages after repeated LPS challenge, suppressing tolerizable genes via reduced TLR4/CD14 expression.
Conclusions:
- HDAC3 is a key mediator of inflammatory responses in human macrophages, distinct from its role in mouse models.
- Targeting HDAC3 offers a potential strategy to induce endotoxin tolerance and control exacerbated immune responses in inflammatory conditions.
- HDAC3 inhibition suppresses key inflammatory pathways, making it an attractive therapeutic target for inflammatory diseases.
Abstract:
Histone deacetylases (HDACs) are a group of enzymes that control histone deacetylation and bear potential to direct expression of large gene sets. We determined the effect of HDAC inhibitors (HDACi) on human monocytes and macrophages, with respect to their polarization, activation, and their capabilities of inducing endotoxin tolerance. To address the role for HDACs in macrophage polarization, we treated monocytes with HDAC3i, HDAC6i or pan-HDACi prior to polarization into M1 or M2 macrophages using IFNγ or IL-4 respectively. To study the HDAC inhibition effect on cytokine expression, macrophages were treated with HDACi prior to LPS-stimulation. TNFα, IL-6, and p40 were measured with ELISA, whereas modifications of Histone 3 and STAT1 were assessed using western blot. To address the role for HDAC3 in repeated LPS challenge induction, HDAC3i or HDAC3 siRNA was added to monocytes prior to incubation with IFNγ, which were then repeatedly challenged with LPS and analyzed by means of protein analyses and transcriptional profiling. Pan-HDACi and HDAC3i reduced cytokine secretion in monocytes and M1 macrophages, whereas HDAC6i yielded no such effect. Notably, neither pan-HDACi nor HDAC3i reduced cytokine secretion in M2 macrophages. In contrast to previous reports in mouse macrophages, HDAC3i did not affect macrophage polarization in human cells. Likewise, HDAC3 was not required for IFNγ signaling or IFNβ secretion. Cytokine and gene expression analyses confirmed that IFNγ-treated macrophages consistently develop a cytokine response after LPS repeated challenge, but pretreatment with HDAC3i or HDAC3 siRNA reinstates a state of tolerance reflected by general suppression of tolerizable genes, possibly through decreasing TLRs expression, and particularly TLR4/CD14. The development of endotoxin tolerance in macrophages is important to reduce exacerbated immune response and limit tissue damage. We conclude that HDAC3 is an attractive protein target to mediate macrophage reactivity and tolerance induction in inflammatory macrophages.
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