Effects of NaCl on the linkages between O2 binding and subunit assembly in human hemoglobin: titration of the quaternary enhancement effect.
摘要:
The principal results of this study were as follows. (i) Assembly of fully oxygenated Hb tetramers is opposed by NaCl; the dimer-to-tetramer equilibrium constant becomes two orders of magnitude less favorable over the [NaCl] range 0.08 M to 1.4 M. By contrast, for deoxy-Hb the assembly equilibrium constant is reduced only two-fold. (ii) Oxygen binding to dimers is non-cooperative over the entire salt range, whereas dimer affinity is slightly favored by increasing the NaCl concentration. (iii) Overall affinity of tetramers for O 2 is opposed by NaCl, becoming an order of magnitude less favorable over the range employed. Most of this decrease occurs at the fourth binding step, which shows a large, salt-mediated quaternary enhancement effect; i.e., the assembly of dimers into tetramers at 0.08 M NaCl is accompanied by an eight-fold increase in O 2 affinity. (iv) The quaternary enhancement effect at the last O 2 -binding step is titrated progressively by salt until it reaches a negligible value near the highest [NaCl] of this study. The lowest [NaCl] condition (0.08 M) elicits the greatest tetramer cooperativity with the largest maximal Hill coefficient and the greatest suppression of intermediates. Possible origins and mechanistic implications of these phenomena are considered.
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关键词:
Cooperative binding Hemoglobin Quaternary enhancement Regulation Subunit assembly Singular value decomposition Dimer-tetramer association Tertiary structural-change Oxygen equilibrium curves Cooperative free-energies
DOI:
10.1021/jo970693a
被引量:
年份:
1997














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