Published July 31, 1990 | Version v1
Journal article

Structure and function of hemoglobin variants at an internal hydrophobic site: Consequences of mutations at the β 27 (B9) position

  • 1. Institut National de la Sante et de la Recherche Medicale, Le Kremlin-Bicetre (France)
  • 2. Centre National de la Recherche Scientifique, Lyon (France)
  • 3. MRC Laboratory for Molecular Biology, Cambridge (England)

Description

The authors have studied the structure-function relationships in newly discovered hemoglobin (Hb) mutants with substitutions occurring at the tight and highly hydrophobic cluster between the B and G helices in the β chains, namely, Hb Knossos or β A27S and Hb Grange-Blanche or β A27V. The β A27S mutant has a 50% decrease in oxygen affinity relative to native human Hb A, while the β A27V mutant has an increased oxygen affinity. They have also engineered the artificial β A27T mutation through site-directed mutagenesis. This new mutant exhibits functional properties similar to those of Hb A. None of these mutants is unstable. X-ray analyses show that the substitution of Val for Ala may reduce the relative stability of the T structure of the molecule through packing effects in the β chains; for the β A27S mutant a new hydrogen bond between serine and the carbonyl O at β 23 (B5) Val is observed and is likely to increase the relative stability of the T structure in the mutant hemoglobin. However, no significant changes in the crystals were observed for these mutants between the quaternary R and T structures relative to native Hb A. They conclude that small tertiary structural changes in the tight hydrophobic B-G helix interface are sufficient to induce functional abnormalities resulting in either low or high intrinsic oxygen affinities

Additional details

Publishing Information

Journal Title
Biochemistry
Journal Volume
29
Journal Issue
30
Series
Biochemistry.
Journal Page Range
7020-7023
ISSN
0006-2960
CODEN
BICHA