Induction of Heme Oxygenase-1 In Vivo Suppresses NADPH Oxidase–Derived Oxidative Stress

Индукция гемоксигеназы-1 in vivo подавляет окислительный стресс, обусловленный НАДФН-оксидазой
Srinivasa Raju Datla, Gregory J. Dusting, Trevor A. Mori, Caroline J. Taylor, Kevin D. Croft, Fan Jiang
2007-08-06

NADPH oxidaseapolipoprotein E-deficient micebilirubinheme oxygenase-1 inductionoxidative stress
Our previous studies suggest that heme oxygenase (HO)-1 induction and/or subsequent bilirubin generation in endothelial cells may suppress superoxide generation of from reduced nicotinamide-adenine dinucleotide phosphate (NADPH) oxidase. In this study, we examined the consequence of HO-1 induction in vivo on NADPH oxidase activity. Three doses of hemin (25 mg x kg(-1), IP, every 48 hours), with or without cotreatment with the HO inhibitor tin protoporphyrin-IX (15 mg x kg(-1), IP), were given to apolipoprotein E-deficient mice, which display vascular oxidative stress. Hemin treatment increased HO-1 expression and activity in aorta (undetectable at baseline) and kidney (by 3-fold) and significantly reduced both NADPH oxidase activity (by approximately 25% to 50%) and superoxide generation in situ. The increase in HO-1 activity and inhibition of NADPH oxidase activity by hemin were reversed by tin protoporphyrin-IX and were not associated with changes in Nox2 or Nox4 protein levels. Hemin also reduced plasma F(2)-isoprostane levels by 23%. The inhibition of NADPH oxidase activity by hemin in the aorta was mimicked by bilirubin in vitro (0.01 to 1 micromol/L). Bilirubin also concentration-dependently reduced NADPH oxidase-dependent superoxide production stimulated by angiotensin II in rat vascular smooth muscle cells and by phorbol 12-myristate 13-acetate in human neutrophil-like HL-60 cells. HO-1 overexpression by plasmid-mediated gene transfer in rat vascular smooth muscle cells decreased NADPH-stimulated superoxide production. Thus, systemic expression of HO-1 suppresses NADPH oxidase activity by mechanisms at least partly mediated by the bile pigment bilirubin, thereby reducing oxidative stress.
1
Bilirubin mimicked hemin’s inhibition of NADPH oxidase and reduced stimulus-dependent superoxide production in vascular smooth muscle cells and human neutrophil-like cells.
2
HO-1 induction reduced vascular NADPH oxidase activity by approximately 25% to 50% and decreased in situ superoxide generation.
3
Hemin lowered plasma F2-isoprostane levels by 23% without altering Nox2 or Nox4 protein levels.
4
In vivo hemin administration induced HO-1 expression and activity in the aorta and kidney of oxidative-stress-prone apolipoprotein E-deficient mice.
5
Tin protoporphyrin-IX reversed hemin-induced HO-1 activation and NADPH oxidase inhibition, supporting a causal role for HO-1.

In vivo vascular and renal systems of apolipoprotein E-deficient mice, including vascular smooth muscle cells and human neutrophil-like HL-60 cells in complementary experiments

Suppression of NADPH oxidase activity and superoxide-derived oxidative stress by HO-1 induction and bilirubin, without changes in Nox2 or Nox4 protein levels

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2007-08-06
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Srinivasa Raju Datla
Gregory J. Dusting
Trevor A. Mori
Caroline J. Taylor
Kevin D. Croft
Fan Jiang
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