Abstract
The role of histidine (HC3) 146 β in the previously established pH-dependent properties of the R state of human hemoglobin has been investigated. The rate constants for the dissociation and combination of the fourth carbon monoxide molecule, l4 and l'4, have been determined as a function of pH for hemoglobin A and des-(His 146 β) hemoglobin A. From these kinetic parameters, the value of L4, the affinity constant for the 4th carbon monoxide molecule, has been calculated according to the equation L4 = l'4/l4. In addition, the effect of removal of histidine 146 β or its replacement by arginine (hemoglobin Cochin-Port Royal) on k4, the rate of oxygen dissociation from fully liganded hemoglobin, has been determined as a function of pH. Removal of histidine 146 β reduces the pH dependence of L4 by 47%. At the same time, it produces a similar, 45%, reduction in the pH dependence of k4. Replacement of histidine 146 β by arginine reduces the pH dependence of k4 by 23% and that of l'4 by about 30%. These chemical modifications cause reductions in the R state Bohr effect which are remarkably similar in magnitude to the reduction which they produce in the overall Bohr effect. These results indicate that histidine 146 β controls a major fraction of the R state Bohr effect as well as being a major participant in the overall and T state Bohr effects.
| Original language | English |
|---|---|
| Pages (from-to) | 8891-8895 |
| Number of pages | 5 |
| Journal | Journal of Biological Chemistry |
| Volume | 257 |
| Issue number | 15 |
| State | Published - 1982 |
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