4.6 Article

Bilirubin mediated oxidative stress involves antioxidant response activation via Nrf2 pathway

Journal

CELLULAR SIGNALLING
Volume 26, Issue 3, Pages 512-520

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.cellsig.2013.11.029

Keywords

Bilirubin neurotoxicity; Oxidative stress; Nrf2 pathway; Heme oxygenase 1; Antioxidant Response Element; Stress response protein kinases

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Funding

  1. Regione Friuli Venezia Giulia-Italy (Fondo Regionale FVG) [lR26/2005]
  2. Telethon grant [GGP10051]
  3. AREA Science Park

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Unconjugated bilirubin (UCB) is responsible for neonatal jaundice and high level of free bilirubin (Bf) can lead to kernicterus. Previous studies suggest that oxidative stress is a critical component of UCB-induced neurotoxicity. The Nrf2 pathway is a powerful sensor for cellular redox state and is activated directly by oxidative stress and/or indirectly by stress response protein kinases. Activated Nrf2 translocates to nucleus, binds to Antioxidant Response Element (ARE), and enhances the up-regulation of cytoprotective genes that mediate cell survival. The aim of the present study was to investigate the role of Nrf2 pathway in cell response to bilirubin mediated oxidative stress in the neuroblastoma SH-SY5Y cell line. Cells exposed to a toxic concentration of UCB (140 nM Bf) showed an increased intracellular ROS levels and enhanced nuclear accumulation of Nrf2 protein. UCB stimulated transcriptional induction of ARE-GFP reporter gene and induced mRNA expression of multiple antioxidant response genes as: xCT, Gly1, gamma GCL-m, gamma GCL-c, HO-1, NQO1, FTH, ME1, and ATF3. Nrf2 siRNA decreased UCB induced mRNA expression of HO1 (75%), NQO1 (54%), and FTH (40%). The Nrf2-related HO-1 induction was reduced to 60% in cells pre-treated with antioxidant (NAC) or specific signaling pathway inhibitors for PKC, P38 alpha and MEK1/2 (80,40 and 25%, respectively). In conclusion, we demonstrated that SH-SY5Y cells undergo an adaptive response against UCB-mediated oxidative stress by activation of multiple antioxidant response, in part through Nrf2 pathway. (C) 2013 Elsevier Inc. All rights reserved.

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