Literature DB >> 19248757

The role of nitrite in nitric oxide homeostasis: a comparative perspective.

Frank B Jensen1.   

Abstract

Nitrite is endogenously produced as an oxidative metabolite of nitric oxide, but it also functions as a NO donor that can be activated by a number of cellular proteins under hypoxic conditions. This article discusses the physiological role of nitrite and nitrite-derived NO in blood flow regulation and cytoprotection from a comparative viewpoint, with focus on mammals and fish. Constitutive nitric oxide synthase activity results in similar plasma nitrite levels in mammals and fish, but nitrite can also be taken up across the gills in freshwater fish, which has implications for nitrite/NO levels and nitrite utilization in hypoxia. The nitrite reductase activity of deoxyhemoglobin is a major mechanism of NO generation from nitrite and may be involved in hypoxic vasodilation. Nitrite is readily transported across the erythrocyte membrane, and the transport is enhanced at low O(2) saturation in some species. Also, nitrite preferentially reacts with deoxyhemoglobin rather than oxyhemoglobin at intermediate O(2) saturations. The hemoglobin nitrite reductase activity depends on heme O(2) affinity and redox potential and shows species differences within mammals and fish. The NO forming capacity is elevated in hypoxia-tolerant species. Nitrite-induced vasodilation is well documented, and many studies support a role of erythrocyte/hemoglobin-derived NO. Vasodilation can, however, also originate from nitrite reduction within the vessel wall, and at present there is no consensus regarding the relative importance of competing mechanisms. Nitrite reduction to NO provides cytoprotection in tissues during ischemia-reperfusion events by inhibiting mitochondrial respiration and limiting reactive oxygen species. It is argued that the study of hypoxia-tolerant lower vertebrates and diving mammals may help evaluate mechanisms and a full understanding of the physiological role of nitrite.

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Year:  2009        PMID: 19248757     DOI: 10.1016/j.bbabio.2009.02.010

Source DB:  PubMed          Journal:  Biochim Biophys Acta        ISSN: 0006-3002


  19 in total

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4.  A computational model for nitric oxide, nitrite and nitrate biotransport in the microcirculation: effect of reduced nitric oxide consumption by red blood cells and blood velocity.

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Authors:  Leah K Cambal; Andrew C Weitz; Hui-Hua Li; Yang Zhang; Xi Zheng; Linda L Pearce; Jim Peterson
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8.  Transport of nitric oxide by perfluorocarbon emulsion.

Authors:  Daniel Ortiz; Pedro Cabrales; Juan C Briceño
Journal:  Biotechnol Prog       Date:  2013-09-10

9.  Nitric oxide metabolites in hypoxia, freezing, and hibernation of the wood frog, Rana sylvatica.

Authors:  Bethany L Williams; James M Wiebler; Richard E Lee; Jon P Costanzo
Journal:  J Comp Physiol B       Date:  2018-09-12       Impact factor: 2.200

Review 10.  Is there a direct role for erythrocytes in the immune response?

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Journal:  Vet Res       Date:  2011-07-29       Impact factor: 3.683

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