Irene Wood, Andrés Trostchansky, Yi Xu, Steven Qian, Rafael Radi, Homero Rubbo
Journal: Free radical biology & medicine 2020;144():176-182
PMID: 30922958
Prostaglandin endoperoxide H synthase (PGHS) is a heme-enzyme responsible for the conversion of arachidonic acid (AA) to prostaglandin H (PGH). PGHS have both oxygenase (COX) and peroxidase (POX) activities and is present in two isoforms (PGHS-1 and -2) expressed in different tissues and cell conditions. It has been reported that PGHS activity is inhibited by the nitrated form of AA, nitro-arachidonic acid (NOAA), which in turn could be synthesized by PGHS under nitro-oxidative conditions. Specifically, NOAA inhibits COX in PGHS-1 as well as POX in both PGHS-1 and -2, in a dose and time-dependent manner. NOAA inhibition involves lowering the binding stability and displacing the heme group from the active site. However, the complete mechanism remains to be understood. This review describes the interactions of PGHS with NOAA, focusing on mechanisms of inhibition and nitration. In addition, using a novel approach combining EPR-spin trapping and mass spectrometry, we described possible intermediates formed during PGHS-2 catalysis and inhibition. This literature revision as well as the results presented here strongly suggest a free radical-dependent inhibitory mechanism of PGHS-2 by NOAA. This is of relevance towards understanding the underlying mechanism of inhibition of PGHS by NOAA and its anti-inflammatory potential.
Copyright © 2019 Elsevier Inc. All rights reserved.
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