POLAR BEAR HEMOGLOBIN AND HUMAN Hb A0: SAME 2,3-DIPHOSPHOGLYCERATE BINDING SITE BUT ASYMMETRY OF THE BINDING?

Polar bear (Ursus maritimus) hemoglobin (Hb) shows a low response to 2,3-diphosphoglycerate (2,3-DPG), compared to human Hb A0, even though these proteins have the same 2,3-DPG-binding site. In addition, polar bear Hb shows a high response to chloride and an alkaline Bohr effect (Δlog P50 ΔpH) that...

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Veröffentlicht in:Hemoglobin 2002-11, Vol.26 (4), p.363-371
Hauptverfasser: Pomponi, Massimo, Bertonati, Claudia, Patamia, Maria, Marta, Maurizio, Derocher, Andrew E., Lydersen, Christian, Kovacs, Kit M., Wiig, Øystein, Bårdgard, Astrid J.
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Sprache:eng
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Zusammenfassung:Polar bear (Ursus maritimus) hemoglobin (Hb) shows a low response to 2,3-diphosphoglycerate (2,3-DPG), compared to human Hb A0, even though these proteins have the same 2,3-DPG-binding site. In addition, polar bear Hb shows a high response to chloride and an alkaline Bohr effect (Δlog P50 ΔpH) that is significantly greater than that of human Hb A0. The difference in sequence Pro (Hb A0)→Gly (polar bear Hb) at position A2 in the A helix seems to be critical for reduced binding of 2,3-DPG. Our results also show that the A2 position may influence not only the flexibility of the A helix, but that differences in flexibility of the first turn of the A helix may affect the unloading of oxygen for the intrinsic ligand affinities of the α and β chains. However, preferential binding to either chain can only take place if there is appreciable asymmetric binding of the phosphoric effector. Regarding this point, 31P NMR data suggest a loss of symmetry of the 2,3-DPG-binding site in the deoxyHb-2,3-DPG complex.
ISSN:0363-0269
1532-432X
DOI:10.1081/HEM-120016373