Literature DB >> 11132636

Mechanism of heme degradation by heme oxygenase.

T Yoshida1, C T Migita.   

Abstract

Heme oxygenase catalyzes the three step-wise oxidation of hemin to alpha-biliverdin, via alpha-meso-hydroxyhemin, verdoheme, and ferric iron-biliverdin complex. This enzyme is a simple protein which does not have any prosthetic groups. However, heme and its two metabolites, alpha-meso-hydroxyhemin and verdoheme, combine with the enzyme and activate oxygen during the heme oxygenase reaction. In the conversion of hemin to alpha-meso-hydroxyhemin, the active species of oxygen is Fe-OOH, which self-hydroxylates heme to form alpha-meso-hydroxyhemin. This step determines the alpha-specificity of the reaction. For the formation of verdoheme and liberation of CO from alpha-meso-hydroxyhemin, oxygen and one reducing equivalent are both required. However, the ferrous iron of the alpha-meso-hydroxyheme is not involved in the oxygen activation and unactivated oxygen is reacted on the 'activated' heme edge of the porphyrin ring. For the conversion of verdoheme to the ferric iron-biliverdin complex, both oxygen and reducing agents are necessary, although the precise mechanism has not been clear. The reduction of iron is required for the release of iron from the ferric iron-biliverdin complex to complete total heme oxygenase reaction.

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Year:  2000        PMID: 11132636     DOI: 10.1016/s0162-0134(00)00156-2

Source DB:  PubMed          Journal:  J Inorg Biochem        ISSN: 0162-0134            Impact factor:   4.155


  33 in total

1.  A heme-degradation pathway in a blood-sucking insect.

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2.  A globin domain in a neuronal transmembrane receptor of Caenorhabditis elegans and Ascaris suum: molecular modeling and functional properties.

Authors:  Lesley Tilleman; Francesca Germani; Sasha De Henau; Signe Helbo; Filip Desmet; Herald Berghmans; Sabine Van Doorslaer; David Hoogewijs; Liliane Schoofs; Bart P Braeckman; Luc Moens; Angela Fago; Sylvia Dewilde
Journal:  J Biol Chem       Date:  2015-02-09       Impact factor: 5.157

Review 3.  Molecular regulation of tumor angiogenesis and perfusion via redox signaling.

Authors:  Thomas W Miller; Jeff S Isenberg; David D Roberts
Journal:  Chem Rev       Date:  2009-07       Impact factor: 60.622

Review 4.  Heme Oxygenase-1 in Kidney Health and Disease.

Authors:  Jeremie M Lever; Ravindra Boddu; James F George; Anupam Agarwal
Journal:  Antioxid Redox Signal       Date:  2016-05-26       Impact factor: 8.401

5.  Modulation of the axial water hydrogen-bonding properties by chemical modification of the substrate in resting state, substrate-bound heme oxygenase from Neisseria meningitidis; coupling to the distal H-bond network via ordered water molecules.

Authors:  Li-Hua Ma; Yangzhong Liu; Xuhong Zhang; Tadashi Yoshida; Kevin C Langry; Kevin M Smith; Gerd N La Mar
Journal:  J Am Chem Soc       Date:  2006-05-17       Impact factor: 15.419

Review 6.  Heme Oxygenases in Cardiovascular Health and Disease.

Authors:  Anita Ayer; Abolfazl Zarjou; Anupam Agarwal; Roland Stocker
Journal:  Physiol Rev       Date:  2016-10       Impact factor: 37.312

7.  Activation of mitogen-activated protein kinases by lysophosphatidylcholine-induced mitochondrial reactive oxygen species generation in endothelial cells.

Authors:  Nobuo Watanabe; Jaroslaw W Zmijewski; Wakako Takabe; Makiko Umezu-Goto; Claire Le Goffe; Azusa Sekine; Aimee Landar; Akira Watanabe; Junken Aoki; Hiroyuki Arai; Tatsuhiko Kodama; Michael P Murphy; Raman Kalyanaraman; Victor M Darley-Usmar; Noriko Noguchi
Journal:  Am J Pathol       Date:  2006-05       Impact factor: 4.307

8.  Increasing expression of H- or L-ferritin protects cortical astrocytes from hemin toxicity.

Authors:  Zhi Li; Jing Chen-Roetling; Raymond F Regan
Journal:  Free Radic Res       Date:  2009-06

9.  Noninnocent effect of axial ligand on the heme degradation process: a theoretical approach to hydrolysis pathway of verdoheme to biliverdin.

Authors:  Parisa R Jamaat; Nasser Safari; Mina Ghiasi; S Shahab-al-din Naghavi; Mansour Zahedi
Journal:  J Biol Inorg Chem       Date:  2007-10-23       Impact factor: 3.358

10.  Neurons lacking iron regulatory protein-2 are highly resistant to the toxicity of hemoglobin.

Authors:  Raymond F Regan; Mai Chen; Zhi Li; Xuefeng Zhang; Luna Benvenisti-Zarom; Jing Chen-Roetling
Journal:  Neurobiol Dis       Date:  2008-05-03       Impact factor: 5.996

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