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Purinergic Signaling in the Modulation of Redox Biology

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Journal Redox Biol
Date 2021 Sep 26
PMID 34563872
Citations 27
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Abstract

Purinergic signaling is a cell communication pathway mediated by extracellular nucleotides and nucleosides. Tri- and diphosphonucleotides are released in physiological and pathological circumstances activating purinergic type 2 receptors (P2 receptors): P2X ion channels and P2Y G protein-coupled receptors. The activation of these receptors triggers the production of reactive oxygen and nitrogen species and alters antioxidant defenses, modulating the redox biology of cells. The activation of P2 receptors is controlled by ecto-enzymes named ectonucleotidases, E-NTPDase1/CD39 and ecto-5'-nucleotidase/CD73) being the most relevant. The first enzyme hydrolyzes adenosine triphosphate (ATP) and adenosine diphosphate (ADP) into adenosine monophosphate (AMP), and the second catalyzes the hydrolysis of AMP to adenosine. The activity of these enzymes is diminished by oxidative stress. Adenosine actives P1 G-coupled receptors that, in general, promote the maintenance of redox hemostasis by decreasing reactive oxygen species (ROS) production and increase antioxidant enzymes. Intracellular purine metabolism can also contribute to ROS generation via xanthine oxidase activity, which converts hypoxanthine into xanthine, and finally, uric acid. In this review, we describe the mechanisms of redox biology modulated by purinergic signaling and how this signaling may be affected by disturbances in the redox homeostasis of cells.

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References
1.
Shen J, Zheng X, Kwan C . Evidence for P(2)-purinoceptors contribution in H(2)O(2)-induced contraction of rat aorta in the absence of endothelium. Cardiovasc Res. 2000; 47(3):574-85. DOI: 10.1016/s0008-6363(00)00123-1. View

2.
BERNE R . Cardiac nucleotides in hypoxia: possible role in regulation of coronary blood flow. Am J Physiol. 1963; 204:317-22. DOI: 10.1152/ajplegacy.1963.204.2.317. View

3.
Shinozaki Y, Koizumi S, Ishida S, Sawada J, Ohno Y, Inoue K . Cytoprotection against oxidative stress-induced damage of astrocytes by extracellular ATP via P2Y1 receptors. Glia. 2004; 49(2):288-300. DOI: 10.1002/glia.20118. View

4.
Chan C, Pedley A, Kim D, Xia C, Zhuang X, Benkovic S . Microtubule-directed transport of purine metabolons drives their cytosolic transit to mitochondria. Proc Natl Acad Sci U S A. 2018; 115(51):13009-13014. PMC: 6304990. DOI: 10.1073/pnas.1814042115. View

5.
Burnstock G, Campbell G, Satchell D, Smythe A . Evidence that adenosine triphosphate or a related nucleotide is the transmitter substance released by non-adrenergic inhibitory nerves in the gut. Br J Pharmacol. 1970; 40(4):668-88. PMC: 1702901. DOI: 10.1111/j.1476-5381.1970.tb10646.x. View