Publication | Open Access
Role of subunit interfaces in the allosteric mechanism of hemoglobin.
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Citations
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References
1976
Year
Free EnergyProtein AssemblySubunit InterfacesMolecular BiologyHeme TraffickingProtein FoldingBiophysicsProtein ChemistryMolecular PhysiologyBiochemistryHeme TransportHeme HomeostasisBiophysical AspectSurface AreaNatural SciencesDimer-dimer InterfaceMolecular BiophysicsMedicineComputational Biophysics
We calculate the surface area buried in subunit interfaces of human deoxyhemoglobin and of horse methemoglobin. A larger surface area is buried in deoxy- than in methemoglobin as a result of tertiary and quaternary structure changes. In both molecules the dimer-dimer interface is closepacked. This implies that hydrophobicity stabilizes the deoxystructure, the free energy spent in keeping the subunits in a low-affinity conformation being compensated by hydrophobic free energy due to the smaller surface area accessible to solvent.
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