Hsp90 inhibition suppresses NF-κB transcriptional activation via Sirt-2 in human lung microvascular endothelial cells

Am J Physiol Lung Cell Mol Physiol. 2016 May 15;310(10):L964-74. doi: 10.1152/ajplung.00054.2016. Epub 2016 Apr 1.

Abstract

The ability of anti-heat shock protein 90 (Hsp90) drugs to attenuate NF-κB-mediated transcription is the major basis for their anti-inflammatory properties. While the molecular mechanisms underlying this effect are not clear, they appear to be distinct in human endothelial cells. We now show for the first time that type 2 sirtuin (Sirt-2) histone deacetylase binds human NF-κB target gene promoter and prevents the recruitment of NF-κB proteins and subsequent assembly of RNA polymerase II complex in human lung microvascular endothelial cells. Hsp90 inhibitors stabilize the Sirt-2/promoter interaction and impose a "transcriptional block," which is reversed by either inhibition or downregulation of Sirt-2 protein expression. Furthermore, this process is independent of NF-κB (p65) Lysine 310 deacetylation, suggesting that it is distinct from known Sirt-2-dependent mechanisms. We demonstrate that Sirt-2 is recruited to NF-κB target gene promoter via interaction with core histones. Upon inflammatory challenge, chromatin remodeling and core histone H3 displacement from the promoter region removes Sirt-2 and allows NF-κB/coactivator recruitment essential for RNA Pol II-dependent mRNA induction. This novel mechanism may have important implications in pulmonary inflammation.

Keywords: Hsp90; NF-κB; Sirt-2; histone h3; human lung endothelial cells.

MeSH terms

  • Acetylation
  • Animals
  • Benzoquinones / pharmacology
  • Cells, Cultured
  • Endothelial Cells / enzymology*
  • Endothelial Cells / immunology
  • Endothelium, Vascular / drug effects
  • Endothelium, Vascular / enzymology*
  • Endothelium, Vascular / immunology
  • HSP90 Heat-Shock Proteins / antagonists & inhibitors*
  • HSP90 Heat-Shock Proteins / metabolism
  • Humans
  • Interleukin-8 / genetics
  • Interleukin-8 / metabolism
  • Lactams, Macrocyclic / pharmacology
  • Lipopolysaccharides / pharmacology
  • Lung / blood supply
  • Male
  • Mice, Inbred C57BL
  • Microvessels / immunology
  • Microvessels / pathology
  • Protein Processing, Post-Translational
  • Protein Transport
  • Signal Transduction
  • Sirtuin 2 / metabolism*
  • Transcription Factor RelA / metabolism*
  • Transcriptional Activation*

Substances

  • Benzoquinones
  • CXCL8 protein, human
  • HSP90 Heat-Shock Proteins
  • Interleukin-8
  • Lactams, Macrocyclic
  • Lipopolysaccharides
  • RELA protein, human
  • Transcription Factor RelA
  • tanespimycin
  • SIRT2 protein, human
  • Sirtuin 2