Title of article :
2,3-DPG-Hb complex: a hypothesis for an asymmetric binding Original Research Article
Author/Authors :
Massimo Pomponi، نويسنده , , Claudia Bertonati، نويسنده , , Eva Fuglei، نويسنده , , oystein Wiig، نويسنده , , Andrew E. Derocher، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2000
Pages :
8
From page :
253
To page :
260
Abstract :
This study was undertaken to test the symmetry of 2,3-diphosphoglycerate (2,3-DPG) binding site in hemoglobin (Hb). From Arnone’s study [A. Arnone, Nature (London) 237 (1972) 146] the 2,3-DPG binding site is located at the top of the cavity, that runs through the center of the deoxy-Hb molecule. However, it is possible that this symmetry reported by Arnone, for crystals of 2,3-DPG-Hb complex, might not be conserved in solution. In this paper, we report the 31P nuclear magnetic resonances of the 2,3-DPG interaction with Hb. The 2,3-DPG chemical shifts of the P2 and P3 resonance are both pH- and hemoglobin-dependent [protein from man, polar bear (Ursus maritimus), Arctic fox (Alopex lagopus) and bovine]. 2,3-DPG binds tightly to deoxyhemoglobin and weakly, nevertheless significantly, to oxyhemoglobin. In particular, our results suggest similar spatial position of the binding site of 2,3-DPG in both forms of Hb in solutions. However, the most unexpected result was the apparent loss of symmetry in the binding site, which might correlate with the ability of the hemoglobin to modulate its functional behavior. The different interactions of the phosphate groups indicate small differences in the quaternary structure of the different deoxy forms of hemoglobin. Given the above structural perturbation an asymmetric binding in the complex could justify, at least in part, different physiological properties of Hb. Regardless, functionally relevant effects of 2,3-DPG seem to be measured and best elucidated through solution studies.
Keywords :
2 , Arctic fox Hb , 3-DPG-Hb complex , Bovine Hb , 31P-NMR , Hemoglobin , Polar bear Hb , HbA
Journal title :
Biophysical Chemistry
Serial Year :
2000
Journal title :
Biophysical Chemistry
Record number :
1112814
Link To Document :
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