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Activation of Nrf2 in endothelial cells protects arteries from exhibiting a proinflammatory state

  • Mustafa Zakkar
  • , Kim Van Der Heiden
  • , Le Anh Luong
  • , Hera Chaudhury
  • , Simon Cuhlmann
  • , Shahir S. Hamdulay
  • , Rob Krams
  • , Indika Edirisinghe
  • , Irfan Rahman
  • , Harald Carlsen
  • , Dorian O. Haskard
  • , Justin C. Mason
  • , Paul C. Evans

Research output: Contribution to journalArticle (Academic Journal)peer-review

239 Citations (Scopus)

Abstract

OBJECTIVE-: Proinflammatory mediators influence atherosclerosis by inducing adhesion molecules (eg, VCAM-1) on endothelial cells (ECs) via signaling intermediaries including p38 MAP kinase. Regions of arteries exposed to high shear stress are protected from inflammation and atherosclerosis, whereas low-shear regions are susceptible. Here we investigated whether the transcription factor Nrf2 regulates EC activation in arteries. METHODS AND RESULTS-: En face staining revealed that Nrf2 was activated in ECs at an atheroprotected region of the murine aorta where it negatively regulated p38-VCAM-1 signaling, but was expressed in an inactive form in ECs at an atherosusceptible site. Treatment with sulforaphane, a dietary antioxidant, activated Nrf2 and suppressed p38-VCAM-1 signaling at the susceptible site in wild-type but not Nrf2-/- animals, indicating that it suppresses EC activation via Nrf2. Studies of cultured ECs revealed that Nrf2 inactivates p38 by suppressing an upstream activator MKK3/6 and by enhancing the activity of the negative regulator MKP-1. CONCLUSIONS-: Nrf2 prevents ECs at the atheroprotected site from exhibiting a proinflammatory state via the suppression of p38-VCAM-1 signaling. Pharmacological activation of Nrf2 reduces EC activation at atherosusceptible sites and may provide a novel therapeutic strategy to prevent or reduce atherosclerosis.

Original languageEnglish
Pages (from-to)1851-1857
Number of pages7
JournalArteriosclerosis, Thrombosis, and Vascular Biology
Volume29
Issue number11
DOIs
Publication statusPublished - Nov 2009

Keywords

  • Arterial endothelium
  • MKK3/6
  • MKP-1
  • Nrf2
  • P38
  • Proinflammatory activation
  • Shear stress
  • Sulforaphane

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