We report the isolation and the functional characterization of α and β chains from pig (Sus scropha domesticus) haemoglobin, as well as of the pig-human hybrid haemoglobins, α2(h)β2(p) and α2(p)β2(h) (i.e. Circe's haemoglobins), obtained by mixing the purified α and β pig chains respectively with the corresponding partner human chains. Their functional properties have been compared with those of both parental haemoglobins in order to obtain information on the role of the different subunits and of their inter-relationships, both at the structural and functional levels. The results indicate that the functional properties of both hybrids are closer to those of the parental haemoglobin that provides the β chains, confirming the major role of the β chains in determining the oxygen affinity and the modulation mechanisms of the tetrameric molecule. This is supported by the thermodynamic properties, since the very low ΔH of oxygen binding that characterizes pig haemoglobin and the α2(h)β2(p) hybrid haemoglobin may be taken as the reflection of specific structural properties of pig β chain.

Circe's haemoglobins, pig-human hybrids: functional characterization and structural considerations

SANNA, MARIA TERESA;OLIANAS, ALESSANDRA;MESSANA, IRENE;
1998-01-01

Abstract

We report the isolation and the functional characterization of α and β chains from pig (Sus scropha domesticus) haemoglobin, as well as of the pig-human hybrid haemoglobins, α2(h)β2(p) and α2(p)β2(h) (i.e. Circe's haemoglobins), obtained by mixing the purified α and β pig chains respectively with the corresponding partner human chains. Their functional properties have been compared with those of both parental haemoglobins in order to obtain information on the role of the different subunits and of their inter-relationships, both at the structural and functional levels. The results indicate that the functional properties of both hybrids are closer to those of the parental haemoglobin that provides the β chains, confirming the major role of the β chains in determining the oxygen affinity and the modulation mechanisms of the tetrameric molecule. This is supported by the thermodynamic properties, since the very low ΔH of oxygen binding that characterizes pig haemoglobin and the α2(h)β2(p) hybrid haemoglobin may be taken as the reflection of specific structural properties of pig β chain.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11584/106967
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