STRUCTURE AND FUNCTION OF HEMOGLOBIN-VARIANTS AT AN INTERNAL HYDROPHOBIC SITE - CONSEQUENCES OF MUTATIONS AT THE BETA-27 (B9) POSITION

被引:8
作者
HUANG, Y
PAGNIER, J
MAGNE, P
BAKLOUTI, F
KISTER, J
DELAUNAY, J
POYART, C
FERMI, G
PERUTZ, MF
机构
[1] HOP BICETRE,INSERM,U299,F-94275 LE KREMLIN BICETR,FRANCE
[2] FAC MED GRANGE BLANCHE,CNRS,URA 1171,F-69373 LYONS 08,FRANCE
[3] MRC,MOLEC BIOL LAB,CAMBRIDGE CB2 2QH,ENGLAND
关键词
D O I
10.1021/bi00482a010
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We 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. We 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 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. We 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. © 1990, American Chemical Society. All rights reserved.
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页码:7020 / 7023
页数:4
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