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Biochemistry|July 11, 1995
Calorimetric analysis of lambda cI repressor binding to DNA operator sitesE Merabet, G K AckersBiophysical Journal|October 1, 1980
Energetics of subunit assembly and ligand binding in human hemoglobinG K AckersBiophysical Chemistry|August 31, 1990
The energetics of ligand-linked subunit assembly in hemoglobin require a third allosteric structureG K AckersThe Journal of Biological Chemistry|January 10, 1977
Thermodynamic studies on subunit assembly in human hemoglobin. Self-association of oxygenated chains (alphaSH and betaSH): determination of stoichiometries and equilibrium constants as a function of temperatureR Valdes, G K AckersBiochemistry|January 23, 1996
Transformation of cooperative free energies between ligation systems of hemoglobin: resolution of the carbon monoxide binding intermediatesY Huang, G K AckersBiochemistry|May 16, 1995
Enthalpic and entropic components of cooperativity for the partially ligated intermediates of hemoglobin support a "symmetry rule" mechanismY Huang, G K AckersProceedings of the National Academy of Sciences of the United States of America|January 1, 1978
Self-association of hemoglobin betaSH chains is linked to oxygenationR Valdes, G K AckersThe Journal of Biological Chemistry|January 10, 1977
Thermodynamic studies on subunit assembly in human hemoglobin. Calorimetric measurements on the reconstitution of oxyhemoglobin from isolated chainsR Valdes, G K AckersBiophysical Chemistry|June 1, 1977
Resolvability of Adair constants from oxygenation curves measured at low hemoglobin concentrationM L Johnson, G K AckersBiochemistry|November 17, 1992
Cooperative oxygen binding, subunit assembly, and sulfhydryl reaction kinetics of the eight cyanomet intermediate ligation states of human hemoglobinM L Doyle, G K AckersPageof 9