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.

Frontiers in Immunology
|October 30, 2020
PubMed

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.