Biliverdin inhibits activation of NF‐κB: Reversal of inhibition by human biliverdin reductase

Биливердин ингибирует активацию NF-κB: реверсия ингибирования под действием биливердинредуктазы человека
Peter Gibbs, Mahin D. Maines
2007-08-07

MAPK signalingNF-kappaB activationbiliverdinhuman biliverdin reductaseiNOS gene
hBVR functions in the cell as a reductase and as a kinase. In the first capacity, it reduces biliverdin, the product of HO activity, to the effective intracellular antioxidant, bilirubin; as a dual-specificity kinase (S/T/Y) it activates the MAPK and IGF/IRK receptor signal transduction pathways. NF-kappaB and the MAPK pathway are activated by ROS, which results in the activation of stress-inducible genes, including ho-1. Presently, we report on the negative effect of biliverdin on NF-kappaB activation and the converse effect of hBVR. Biliverdin, in a concentration- and time-dependent manner, inhibited transcriptional activity of NF-kappaB in HEK293A cells. Nuclear extracts from biliverdin-treated cells show reduced DNA binding of NF-kappaB in an electromobility shift assay, whereas extracts from cells treated with TNF-alpha showed enhanced binding. Coimmunoprecipitation data show hBVR binds to the 65 kDa subunit of NF-kappaB, and that this is dependent on activation by TNF-alpha. Overexpression of hBVR enhanced both the basal and TNF-alpha-mediated activation of NF-kappaB and also that of the NF-kappaB-activated iNOS gene. Also, overexpression of hBVR arrested the cell cycle in the G(1)/G(0) phase and reduced the number of cells in S phase. Similar results were observed with MCF-7 cells. Because of the Janus nature of NF-kappaB activity in the cell and the inhibitory action of biliverdin, the present findings provide a foundation for therapeutic intervention in inflammatory diseases and cancer that may be attained by preventing reduction of biliverdin. On the other hand, by increasing BVR levels beneficial functions of NF-kappaB might be augmented.
1
Biliverdin inhibited NF-κB transcriptional activity in HEK293A cells in a concentration- and time-dependent manner.
2
Biliverdin treatment reduced NF-κB DNA binding, whereas TNF-α enhanced NF-κB binding in electrophoretic mobility shift assays.
3
Human biliverdin reductase bound the p65 NF-κB subunit in a TNF-α activation-dependent manner.
4
Human biliverdin reductase overexpression induced G1/G0 cell-cycle arrest and reduced S-phase cells, with similar effects observed in MCF-7 cells.
5
Overexpression of human biliverdin reductase enhanced basal and TNF-α-induced NF-κB activity, including activation of the NF-κB-regulated iNOS gene.

Biliverdin and human biliverdin reductase (hBVR) in NF-κB signaling in HEK293A and MCF-7 cells

The opposing effects of biliverdin and hBVR on NF-κB activation, DNA binding, iNOS expression, and cell-cycle progression

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2007-08-07
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Peter Gibbs
Mahin D. Maines
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