Limited Role for the Bilirubin-Biliverdin Redox Amplification Cycle in the Cellular Antioxidant Protection by Biliverdin Reductase

Ограниченная роль окислительно-восстановительного цикла амплификации билирубин—биливердин в антиоксидантной защите клеток, обеспечиваемой биливердинредуктазой
Ghassan J. Maghzal, Meng-Choo Leck, Emma J. Collinson, Cheng Li, Roland Stocker
2009-08-19

bilirubin-biliverdin redox cyclebiliverdin reductasecellular antioxidant defenselipid peroxidationoxidative stress
In mammalian cells, heme is degraded by heme oxygenase to biliverdin, which is then reduced to bilirubin by biliverdin reductase (BVR). Both bile pigments have reducing properties, and bilirubin is now generally considered to be a potent antioxidant, yet it remains unclear how it protects cells against oxidative damage. A presently popular explanation for the antioxidant function of bilirubin is a redox cycle in which bilirubin is oxidized to biliverdin and then recycled by BVR. Here, we reexamined this putative BVR-mediated redox cycle. We observed that lipid peroxidation-mediated oxidation of bilirubin in chloroform, a model of cell membrane-bound bilirubin, did not yield biliverdin, a prerequisite for the putative redox cycle. Similarly, H(2)O(2) did not oxidize albumin-bound bilirubin to biliverdin, and in vitro oxidation of albumin or ligandin-bound bilirubin by peroxyl radicals gave modest yields of biliverdin. In addition, decreasing cellular BVR protein and activity in HeLa cells using RNA interference did not alter H(2)O(2)-mediated cell death, just as BVR overexpression failed to enhance protection of these cells against H(2)O(2)-mediated damage, irrespective of whether bilirubin or biliverdin were added to the cells as substrate for the putative redox cycle. Similarly, transformation of human BVR into hmx1 (heme oxygenase) mutant yeast did not provide protection against H(2)O(2) toxicity above that seen in hmx1 mutant yeast expressing human heme oxygenase-1. Together, these results argue against the BVR-mediated redox cycle playing a general or important role as cellular antioxidant defense mechanism.
1
BVR overexpression failed to improve HeLa cell protection against hydrogen peroxide, regardless of whether bilirubin or biliverdin was supplied.
2
Human BVR expression did not increase hydrogen peroxide resistance in heme oxygenase-1-deficient yeast beyond protection provided by human heme oxygenase-1, arguing against a major general antioxidant role for the BVR-mediated redox cycle.
3
Hydrogen peroxide did not oxidize albumin-bound bilirubin to biliverdin, while peroxyl-radical oxidation of protein-bound bilirubin produced only modest biliverdin yields.
4
Lipid peroxidation-mediated oxidation of bilirubin in chloroform did not produce biliverdin, contradicting a prerequisite of the proposed BVR redox cycle.
5
Reducing BVR protein levels or activity in HeLa cells did not change hydrogen peroxide-induced cell death.

The bilirubin–biliverdin redox cycle mediated by biliverdin reductase in mammalian cells

Its role and effectiveness in protecting cells against hydrogen peroxide- and oxidative damage

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2009-08-19
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Ghassan J. Maghzal
Meng-Choo Leck
Emma J. Collinson
Cheng Li
Roland Stocker
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