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PMID: 4854449 Published · ppublish English Journal Article

Studies of hemoglobin denaturation and Heinz body formation in the unstable hemoglobins.

The Journal of clinical investigation ·Vol. 54 ·No. 3 ·1974-09-00 ·Pages 678-89

Winterbourn CC, Carrell RW

Abstract

The sequential changes that occur during the precipitation on mild heating of the unstable hemoglobins, Hb Christchurch, Hb Sydney, Hb Köln, and Hb A, were examined with particular attention to the possibility of an accompanying oxidative process. Hb Christchurch, Hb Sydney, and Hb A precipitated with equal amounts of alpha- and beta-chains and full heme complement. Hb Köln, however, was one-half hemedepleted and showed a slight excess of precipitated beta-chains. In all cases the spectrum of the precipitated material was typical of a hemichrome. There was no evidence that sulfhydryl oxidation contributed to the precipitation process. Reduced glutathione was unable to protect the hemoglobin against precipitation, and mixed disulfide formation between the precipitating hemoglobin and glutathione was insignificant, even in the presence of excess glutathione. No blockade of beta93 cysteines could be demonstrated in the unstable hemoglobins. Precipitation of oxyhemoglobin and carboxyhemoglobin in all cases gave nonspecific oxidation of approximately two of the six hemoglobin sulfhydryl groups to give intra- and intermolecular disulfide bonds. Single alpha- and beta-chains, plus polymers of up to five or six chains linked by disulfide bridges, were demonstrated by polyacrylamide gel electrophoresis. This disulfide oxidation was not observed with deoxy- or methemoglobin and did not appear to influence the rate of precipitation. These findings fit the theoretical prediction that autoxidation of oxy- and carboxyhemoglobin is accompanied by formation of a free radical, with the reactions of this free radical being confined intramolecularly.Together, these results are in keeping with predictions based on the known structural abnormalities of the unstable hemoglobins, all of which result in greater molecular flexibility. Our findings support the conclusion that the usual precipitating event is altered bonding at the heme to give the formation of hemichromes. There is no evidence of an accompanying oxidative process that could pose a threat to the integrity of the red cell.

MeSH Terms
Anemia, Hemolytic, Congenital/blood Binding Sites Blood Protein Electrophoresis Carboxyhemoglobin/metabolism Chemical Precipitation Chromatography, Gel Electrophoresis, Polyacrylamide Gel Ferricyanides/pharmacology Free Radicals Glutathione/pharmacology Heinz Bodies Heme/metabolism Hemoglobins, Abnormal/metabolism Hemolysis Hot Temperature Humans Methemoglobin/metabolism Oxidation-Reduction Oxyhemoglobins/metabolism Protein Binding Sulfhydryl Compounds/blood
Chemicals
Ferricyanides Free Radicals Hemoglobins, Abnormal Oxyhemoglobins Sulfhydryl Compounds Heme Methemoglobin Carboxyhemoglobin Glutathione
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Winterbourn C C
Carrell R W
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31 references, click to expand
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Article Info
Journal
The Journal of clinical investigation
Abbr.
J Clin Invest
ISSN
0021-9738
Published
1974-09-00
Pages
678-89
Language
English
Region
United States
NLM ID
7802877
PMCID
PMC301602
Subset
IM
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