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Publication Date:
June 2005
ISSN:
1437-4315
DOI:
10.1515/BC.2002.043

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Editor-in-Chief: Brüne, Bernhard

Editorial Board Member: Ludwig, Stephan / Sies, Helmut / Stoffel, Markus / Turk, Boris / Wittinghofer, Alfred / Baumeister, Wolfgang / Bergeron, John / Bogyo, Matthew / Bürkle, Alexander / Cadenas, Enrique / Chiti, Fabrizio / Dikic, Ivan / Dobson, Christopher / Driessen, Arnold / Fritz, Hans / Gevaert, Kris / Hammann, Christian / Hartl, F. Ulrich / Häussinger, Dieter / Hiscott, John / Igarashi, Yasuyuki / Klotz, Lars-Oliver / Krüger, Achim / Magdolen, Viktor / Müschen, Markus / Narumiya, Shuh / Naumann, Michael / Pejler, Gunnar / Pfanner, Nikolaus / Pike, Robert / Potempa, Jan / Saftig, Paul / Sandhoff, Konrad / Schaffner, Walter / Sinning, Irmgard / Sommerhoff, Christian P.

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The Pathobiochemistry of Nitrogen Dioxide

M. Kirsch / H.-G. Korth / R. Sustmann / H. de Groot

Citation Information: Biological Chemistry. Volume 383, Issue 3-4, Pages 389–399, ISSN (Print) 1431-6730, DOI: 10.1515/BC.2002.043, June 2005

Publication History:
Published Online:
2005-06-01

Abstract

Nitrogen dioxide (NO2) is an oxidizing free radical which can initiate a variety of destructive pathways in living systems, and several diseases are suspected to be connected with both exogenously and endogenously formed NO2. Peroxynitrite (ONOO/ONOOH) is believed to be an important endogenous source of NO2 radicals, but other sources, among them enzymatically ones, have been identified recently. It also became clear during the last few years that in vivo formation of 3-nitrotyrosine strictly depends on the availability of NO2 radicals. Since nitrogen dioxide is a very toxic compound an arsenal of antioxidants (e.g. vitamin C, glutathione, vitamin E, and βcarotene) must eliminate this harmful radical in vivo. Here the recently identified superoxide (O2)dependent formation of peroxynitrate (O2NOO) and the central role of vitamin C are of special importance.

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