Back to Search Start Over

Heme Redox Properties of S-Nitrosated Hemoglobin A0and Hemoglobin S

Authors :
Bonaventura, Celia
Taboy, Céline H.
Low, Philip S.
Stevens, Robert D.
Lafon, Céline
Crumbliss, Alvin L.
Source :
Journal of Biological Chemistry; April 2002, Vol. 277 Issue: 17 p14557-14563, 7p
Publication Year :
2002

Abstract

S-Nitrosated hemoglobin is remarkably stable and can be cycled between deoxy, oxygenated, or oxidized forms without significant loss of NO. Here we show thatS-nitrosation of adult human hemoglobin (Hb A0) or sickle cell Hb (Hb S) results in an increased ease of anaerobic heme oxidation, while anions cause redox shifts in the opposite direction. The negatively charged groups of the cytoplasmic domain of Band 3 protein also produce an allosteric effect on S-nitrosated Hb. Formation and deoxygenation of a SNO-Hb/Band 3 protein assembly does not in itself cause NO release, even in the presence of glutathione; however, this assembly may play a role in the migration of NO from the red blood cells to other targets and may be linked to Heinz body formation. Studies of the anaerobic oxidation of Hb S revealed an altered redox potential relative to Hb A0that favors met-Hb formation and may therefore underlie the increased rate of autoxidation of Hb S under aerobic conditions, the increased formation of Heinz bodies in sickle cells, and the decreased lifetime of red cells containing Hb S. A model for the interrelationships between the deoxy, oxy, and met forms of Hb A0and Hb S, and their S-nitrosated counterparts, is presented.

Details

Language :
English
ISSN :
00219258 and 1083351X
Volume :
277
Issue :
17
Database :
Supplemental Index
Journal :
Journal of Biological Chemistry
Publication Type :
Periodical
Accession number :
ejs7244482
Full Text :
https://doi.org/10.1074/jbc.M107658200