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α-Hemoglobin Stabilizing Protein (AHSP) Markedly Decreases the Redox Potential and Reactivity of α-subunits of Human HbA with Hydrogen Peroxide

Overview
Journal J Biol Chem
Specialty Biochemistry
Date 2012 Dec 25
PMID 23264625
Citations 22
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Abstract

α-Hemoglobin stabilizing protein (AHSP) is a molecular chaperone that binds monomeric α-subunits of human hemoglobin A (HbA) and modulates heme iron oxidation and subunit folding states. Although AHSP·αHb complexes autoxidize more rapidly than HbA, the redox mechanisms appear to be similar. Both metHbA and isolated met-β-subunits undergo further oxidation in the presence of hydrogen peroxide (H(2)O(2)) to form ferryl heme species. Surprisingly, much lower levels of H(2)O(2)-induced ferryl heme are produced by free met-α-subunits as compared with met-β-subunits, and no ferryl heme is detected in H(2)O(2)-treated AHSP·met-α-complex at pH values from 5.0 to 9.0 at 23 °C. Ferryl heme species were similarly not detected in AHSP·met-α Pro-30 mutants known to exhibit different rates of autoxidation and hemin loss. EPR data suggest that protein-based radicals associated with the ferryl oxidation state exist within HbA α- and β-subunits. In contrast, treatment of free α-subunits with H(2)O(2) yields much smaller radical signals, and no radicals are detected when H(2)O(2) is added to AHSP·α-complexes. AHSP binding also dramatically reduces the redox potential of α-subunits, from +40 to -78 mV in 1 m glycine buffer, pH 6.0, at 8 °C, demonstrating independently that AHSP has a much higher affinity for Fe(III) versus Fe(II) α-subunits. Hexacoordination in the AHSP·met-α complex markedly decreases the rate of the initial H(2)O(2) reaction with iron and thus provides α-subunits protection against damaging oxidative reactions.

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References
1.
Zhou S, Olson J, Fabian M, Weiss M, Gow A . Biochemical fates of alpha hemoglobin bound to alpha hemoglobin-stabilizing protein AHSP. J Biol Chem. 2006; 281(43):32611-8. DOI: 10.1074/jbc.M607311200. View

2.
Reeder B, Sharpe M, Kay A, Kerr M, Moore K, Wilson M . Toxicity of myoglobin and haemoglobin: oxidative stress in patients with rhabdomyolysis and subarachnoid haemorrhage. Biochem Soc Trans. 2002; 30(4):745-8. DOI: 10.1042/bst0300745. View

3.
Reeder B . The redox activity of hemoglobins: from physiologic functions to pathologic mechanisms. Antioxid Redox Signal. 2010; 13(7):1087-123. DOI: 10.1089/ars.2009.2974. View

4.
Baek J, DAgnillo F, Vallelian F, Pereira C, Williams M, Jia Y . Hemoglobin-driven pathophysiology is an in vivo consequence of the red blood cell storage lesion that can be attenuated in guinea pigs by haptoglobin therapy. J Clin Invest. 2012; 122(4):1444-58. PMC: 3314461. DOI: 10.1172/JCI59770. View

5.
Flynn T, Allen D, Johnson G, White J . Oxidant damage of the lipids and proteins of the erythrocyte membranes in unstable hemoglobin disease. Evidence for the role of lipid peroxidation. J Clin Invest. 1983; 71(5):1215-23. PMC: 436981. DOI: 10.1172/jci110870. View