AI Article Synopsis

  • Singlet molecular oxygen (O) plays a crucial role in the metabolism of the amino acid tryptophan, leading to the production of N-formylkynurenine, with its regulation being significant in inflammatory responses.
  • The enzyme indoleamine 2,3-dioxygenase 1, found in arterial endothelial cells, contributes to blood pressure regulation, and it has been established that this enzyme generates O when in the presence of hydrogen peroxide.
  • The resulting hydroperoxide derived from tryptophan acts as a signaling molecule, promoting arterial relaxation and lowering blood pressure, highlighting a novel function of O in maintaining vascular health during inflammation.

Article Abstract

Singlet molecular oxygen (O) has well-established roles in photosynthetic plants, bacteria and fungi, but not in mammals. Chemically generated O oxidizes the amino acid tryptophan to precursors of a key metabolite called N-formylkynurenine, whereas enzymatic oxidation of tryptophan to N-formylkynurenine is catalysed by a family of dioxygenases, including indoleamine 2,3-dioxygenase 1. Under inflammatory conditions, this haem-containing enzyme is expressed in arterial endothelial cells, where it contributes to the regulation of blood pressure. However, whether indoleamine 2,3-dioxygenase 1 forms O and whether this contributes to blood pressure control have remained unknown. Here we show that arterial indoleamine 2,3-dioxygenase 1 regulates blood pressure via formation of O. We observed that in the presence of hydrogen peroxide, the enzyme generates O and that this is associated with the stereoselective oxidation of L-tryptophan to a tricyclic hydroperoxide via a previously unrecognized oxidative activation of the dioxygenase activity. The tryptophan-derived hydroperoxide acts in vivo as a signalling molecule, inducing arterial relaxation and decreasing blood pressure; this activity is dependent on Cys42 of protein kinase G1α. Our findings demonstrate a pathophysiological role for O in mammals through formation of an amino acid-derived hydroperoxide that regulates vascular tone and blood pressure under inflammatory conditions.

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Source
http://dx.doi.org/10.1038/s41586-019-0947-3DOI Listing

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