TY - JOUR
T1 - Studies on scapharca hemoglobins. Properties of the dimeric protein reconstituted with Fe- or Co-porphyrin
AU - Verzili, D.
AU - Santucci, R.
AU - Ikeda-saito, M.
AU - Chiancone, E.
AU - Ascoli, F.
AU - Yonetani, T.
AU - Antonini, E.
PY - 1982/6/4
Y1 - 1982/6/4
N2 - A native globin from the dimeric hemoglobin, hemoglobin I, of the mollusc Scapharca inaequivalvis has been obtained with the acid-acetone method. The globin has a lower sedimentation coefficient than the native protein at neutral pH; its reconstitution product with natural heme has the same physicochemical and functional properties as the native protein, proto- and meso-cobalt hemoglobin I have been prepared and characterized, proto-Cobalt hemoglobin I binds oxygen reversibly with a lower affinity and a lower cooperativity than native hemoglobin I; thus, the changes in the functional properties brought about by substitution of iron with cobalt are similar to those observed in human hemoglobin A. The EPR spectra of deoxy-proto-cobalt hemoglobin I and of the photolysis product of oxy-meso-cobalt hemoglobin I indicate that two histidine residues are the apical heme ligands. The broad signal at g = 2.38 in deoxy-proto-cobalt hemoglobin I points to a constrained structure of the heme site in this derivative which results from a distorted coordination of the hindered proximal histidine. A similar structure has been proposed previously for the α chains in deoxy-cobalt hemoglobin A.
AB - A native globin from the dimeric hemoglobin, hemoglobin I, of the mollusc Scapharca inaequivalvis has been obtained with the acid-acetone method. The globin has a lower sedimentation coefficient than the native protein at neutral pH; its reconstitution product with natural heme has the same physicochemical and functional properties as the native protein, proto- and meso-cobalt hemoglobin I have been prepared and characterized, proto-Cobalt hemoglobin I binds oxygen reversibly with a lower affinity and a lower cooperativity than native hemoglobin I; thus, the changes in the functional properties brought about by substitution of iron with cobalt are similar to those observed in human hemoglobin A. The EPR spectra of deoxy-proto-cobalt hemoglobin I and of the photolysis product of oxy-meso-cobalt hemoglobin I indicate that two histidine residues are the apical heme ligands. The broad signal at g = 2.38 in deoxy-proto-cobalt hemoglobin I points to a constrained structure of the heme site in this derivative which results from a distorted coordination of the hindered proximal histidine. A similar structure has been proposed previously for the α chains in deoxy-cobalt hemoglobin A.
KW - (Scapharca)
KW - Fe-porphyrin
KW - Hemoglobin
KW - Metalloprotein
KW - Reconstituted dimer
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U2 - 10.1016/0167-4838(82)90148-0
DO - 10.1016/0167-4838(82)90148-0
M3 - Article
C2 - 6285982
AN - SCOPUS:0020474679
SN - 1570-9639
VL - 704
SP - 215
EP - 220
JO - BBA - Protein Structure
JF - BBA - Protein Structure
IS - 2
ER -