Literature DB >> 17600531

Reactivity and endogenous modification by nitrite and hydrogen peroxide: does human neuroglobin act only as a scavenger?

Stefania Nicolis1, Enrico Monzani, Chiara Ciaccio, Paolo Ascenzi, Luc Moens, Luigi Casella.   

Abstract

NGB (human neuroglobin), a recently discovered haem protein of the globin family containing a six-co-ordinated haem, is expressed in nervous tissue, but the physiological function of NGB is currently unknown. As well as playing a role in neuronal O2 homoeostasis, NGB is thought to act as a scavenger of reactive species. In the present study, we report on the reactivity of metNGB (ferric-NGB), which accumulates in vivo as a result of the reaction of oxyNGB (oxygenated NGB) with NO, towards NO2- and H2O2. NO2- co-ordination of the haem group accounts for the activity of metNGB in the nitration of phenolic substrates. The two different metNGB forms, with and without the internal disulfide bond between Cys46 (seventh residue on the inter-helix region between helices C and D) and Cys55 (fifth residue on helix D), exhibit different reactivity, the former being more efficient in activating NO2-. The kinetics of the reactions, the NO2--binding studies and the analysis of the nitrated products from different substrates all support the hypothesis that metNGB is able to generate an active species with the chemical properties of peroxynitrite, at pathophysiological concentrations of NO2- and H2O2. Without external substrates, the targets of the reactive species generated by the metNGB/NO2-/H2O2 system are endogenous tyrosine (resulting in the production of 3-nitrotyrosine) and cysteine (oxidized to sulfinic acid and sulfonic acid) residues. These endogenous modifications were characterized by HPLC-MS/MS (tandem MS) analysis of metNGB after reaction with NO2- and H2O2 under various conditions. The internal S-S bond affects the functional properties of the protein. Therefore metNGB acts not only as scavenger of toxic species, but also as a target of the self-generated reactive species. Self-modification of the protein may be related to or inhibit its postulated neuroprotective activity.

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Year:  2007        PMID: 17600531      PMCID: PMC2267408          DOI: 10.1042/BJ20070372

Source DB:  PubMed          Journal:  Biochem J        ISSN: 0264-6021            Impact factor:   3.857


  45 in total

1.  Endogenously nitrated proteins in mouse brain: links to neurodegenerative disease.

Authors:  Colette A Sacksteder; Wei-Jun Qian; Tatyana V Knyushko; Haixing Wang; Mark H Chin; Goran Lacan; William P Melega; David G Camp; Richard D Smith; Desmond J Smith; Thomas C Squier; Diana J Bigelow
Journal:  Biochemistry       Date:  2006-07-04       Impact factor: 3.162

2.  Oxidation of phenolic compounds by lactoperoxidase. Evidence for the presence of a low-potential compound II during catalytic turnover.

Authors:  E Monzani; A L Gatti; A Profumo; L Casella; M Gullotti
Journal:  Biochemistry       Date:  1997-02-18       Impact factor: 3.162

3.  Condensed expirate nitrite as a home marker for acute asthma.

Authors:  J Hunt; R E Byrns; L J Ignarro; B Gaston
Journal:  Lancet       Date:  1995-11-04       Impact factor: 79.321

4.  Determination of sulfhydryl groups with 2,2'- or 4,4'-dithiodipyridine.

Authors:  D R Grassetti; J F Murray
Journal:  Arch Biochem Biophys       Date:  1967-03       Impact factor: 4.013

5.  Formation of reactive nitrogen species during peroxidase-catalyzed oxidation of nitrite. A potential additional mechanism of nitric oxide-dependent toxicity.

Authors:  A van der Vliet; J P Eiserich; B Halliwell; C E Cross
Journal:  J Biol Chem       Date:  1997-03-21       Impact factor: 5.157

6.  Formation of nitric oxide-derived inflammatory oxidants by myeloperoxidase in neutrophils.

Authors:  J P Eiserich; M Hristova; C E Cross; A D Jones; B A Freeman; B Halliwell; A van der Vliet
Journal:  Nature       Date:  1998-01-22       Impact factor: 49.962

7.  Structural characterization of nitrimyoglobin.

Authors:  L L Bondoc; R Timkovich
Journal:  J Biol Chem       Date:  1989-04-15       Impact factor: 5.157

8.  Serum concentrations of nitrite in patients with HIV-1 infection.

Authors:  D Torre; G Ferrario; F Speranza; A Orani; G P Fiori; C Zeroli
Journal:  J Clin Pathol       Date:  1996-07       Impact factor: 3.411

9.  Myeloperoxidase and horseradish peroxidase catalyze tyrosine nitration in proteins from nitrite and hydrogen peroxide.

Authors:  J B Sampson; Y Ye; H Rosen; J S Beckman
Journal:  Arch Biochem Biophys       Date:  1998-08-15       Impact factor: 4.013

Review 10.  The chemistry of peroxynitrite: a product from the reaction of nitric oxide with superoxide.

Authors:  W A Pryor; G L Squadrito
Journal:  Am J Physiol       Date:  1995-05
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  18 in total

1.  Neuroglobin protects neurons against oxidative stress in global ischemia.

Authors:  Richard Changxun Li; Shang Zhi Guo; Seung Kwan Lee; David Gozal
Journal:  J Cereb Blood Flow Metab       Date:  2010-06-23       Impact factor: 6.200

2.  14-3-3 binding and phosphorylation of neuroglobin during hypoxia modulate six-to-five heme pocket coordination and rate of nitrite reduction to nitric oxide.

Authors:  Thottala Jayaraman; Jesús Tejero; Bill B Chen; Arlin B Blood; Sheila Frizzell; Calli Shapiro; Mauro Tiso; Brian L Hood; Xunde Wang; Xuejun Zhao; Thomas P Conrads; Rama K Mallampalli; Mark T Gladwin
Journal:  J Biol Chem       Date:  2011-09-29       Impact factor: 5.157

Review 3.  Current perspectives and challenges in understanding the role of nitrite as an integral player in nitric oxide biology and therapy.

Authors:  Dario A Vitturi; Rakesh P Patel
Journal:  Free Radic Biol Med       Date:  2011-06-16       Impact factor: 7.376

4.  Human neuroglobin functions as a redox-regulated nitrite reductase.

Authors:  Mauro Tiso; Jesús Tejero; Swati Basu; Ivan Azarov; Xunde Wang; Virgil Simplaceanu; Sheila Frizzell; Thottala Jayaraman; Lisa Geary; Calli Shapiro; Chien Ho; Sruti Shiva; Daniel B Kim-Shapiro; Mark T Gladwin
Journal:  J Biol Chem       Date:  2011-02-04       Impact factor: 5.157

5.  Identification of protein radicals formed in the human neuroglobin-H2O2 reaction using immuno-spin trapping and mass spectrometry.

Authors:  Olivier M Lardinois; Kenneth B Tomer; Ronald P Mason; Leesa J Deterding
Journal:  Biochemistry       Date:  2008-09-04       Impact factor: 3.162

6.  Neuroglobin protects against nitric oxide toxicity.

Authors:  Kunlin Jin; Xiao Ou Mao; Lin Xie; Adil A Khan; David A Greenberg
Journal:  Neurosci Lett       Date:  2007-11-04       Impact factor: 3.046

7.  Neuroglobin protects PC12 cells against oxidative stress.

Authors:  Richard C Li; Matthew W Morris; Seung Kwan Lee; Farzan Pouranfar; Yang Wang; David Gozal
Journal:  Brain Res       Date:  2007-11-22       Impact factor: 3.252

8.  Nitrosyl Myoglobins and Their Nitrite Precursors: Crystal Structural and Quantum Mechanics and Molecular Mechanics Theoretical Investigations of Preferred Fe -NO Ligand Orientations in Myoglobin Distal Pockets.

Authors:  Bing Wang; Yelu Shi; Jesús Tejero; Samantha M Powell; Leonard M Thomas; Mark T Gladwin; Sruti Shiva; Yong Zhang; George B Richter-Addo
Journal:  Biochemistry       Date:  2018-07-27       Impact factor: 3.162

9.  Impact of A90P, F106L and H64V mutations on neuroglobin stability and ligand binding kinetics.

Authors:  E André; V Derrien; P Sebban; N Assrir; E Lescop; S Bernad
Journal:  J Biol Inorg Chem       Date:  2018-10-25       Impact factor: 3.358

Review 10.  Hemoglobin: a nitric-oxide dioxygenase.

Authors:  Paul R Gardner
Journal:  Scientifica (Cairo)       Date:  2012-12-19
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