Histone deacetylase 7 promotes Toll-like receptor 4-dependent proinflammatory gene expression in macrophages

Melanie R Shakespear1, Daniel M Hohenhaus1, Greg M Kelly1

  • 1From the Institute for Molecular Bioscience and Australian Infectious Diseases Research Centre, University of Queensland, Queensland 4072, Australia and.

Insights

Histone deacetylase 7 (HDAC7) isoforms regulate inflammatory responses in macrophages. The HDAC7-untruncated isoform (Hdac7-u) promotes Toll-like receptor (TLR)-induced inflammation via HIF-1α, unlike the standard isoform (Hdac7-s).

Area of Science:

  • Immunology
  • Molecular Biology
  • Epigenetics

Background:

  • Histone deacetylases (HDACs) broadly inhibit Toll-like receptor (TLR)-induced inflammatory mediators.
  • HDAC7 is upregulated in inflammatory macrophages, suggesting a specific role in macrophage-mediated inflammation.

Purpose of the Study:

  • To investigate the role of specific HDAC7 isoforms in regulating TLR-inducible inflammatory responses in mouse macrophages.
  • To elucidate the molecular mechanisms by which HDAC7 isoforms influence inflammatory gene expression and signaling pathways.

Main Methods:

  • Comparing HDAC expression in different macrophage populations.
  • Overexpressing specific HDAC7 isoforms (Hdac7-u and Hdac7-s) in RAW264 cells.
  • Utilizing a class IIa-selective HDAC inhibitor.
  • Analyzing promoter activity and protein-protein interactions (coimmunoprecipitation).

Main Results:

  • Hdac7-u, but not Hdac7-s, promoted LPS-inducible inflammatory gene expression (Edn1, Il-12p40, Il-6).
  • HDAC7 activity was required for TLR-induced inflammatory mediator production.
  • A hypoxia-inducible factor (HIF)-1 binding site was essential for HDAC-dependent TLR-inducible promoter activity.
  • Hdac7-u interacted with HIF-1α, promoting its signaling, while Hdac7-s interacted with CtBP1, potentially inhibiting this effect.

Conclusions:

  • Hdac7-u positively regulates HIF-1α-dependent TLR signaling in macrophages.
  • The interaction of Hdac7-s with CtBP1 may prevent its pro-inflammatory role.
  • HDAC7, particularly the Hdac7-u isoform, represents a potential therapeutic target for inflammatory diseases.

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