SUBUNIT INTERACTIONS IN HEMOGLOBIN PROBED BY FLUORESCENCE AND HIGH-PRESSURE TECHNIQUES

被引:44
作者
PIN, S
ROYER, CA
GRATTON, E
ALPERT, B
WEBER, G
机构
[1] UNIV ILLINOIS,DEPT PHYS,FLUORESCENCE DYNAM LAB,URBANA,IL 61801
[2] UNIV ILLINOIS,DEPT BIOCHEM,URBANA,IL 61801
[3] UNIV PARIS 07,BIOL PHYSICOCHIM LAB,F-75251 PARIS 05,FRANCE
关键词
D O I
10.1021/bi00491a013
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
The dissociation of the subunits of human adult oxyhemoglobin has been investigated by using steady-state fluorescence anisotropy, multifrequency phase fluorometry, and high hydrostatic pressure. Human hemoglobin obtained by using two purification procedures (bulk preparation by centrifugation or further fractionation using anion-exchange chromatography) was labeled with an extrinsic fluorescent probe, 5-(dimethylamino)naphthalene-1-sulfonyl chloride (DNS-Cl). The long fluorescence lifetime of this probe allows for the observation of the macromolecular tumbling, and thus provides a method for observing changes in the size of the complex upon subunit dissociation under differing solution conditions of proton and organic phosphate concentration. At pH 7, the dansylated preparations of bulk and fractionated hemoglobin showed a concentration-dependent decrease in the anisotropy which though not identical can only arise from the tetramer to dimer dissociation. We observed primarily the dimer at pH 9 and a small destabilization of the tetramer in the presence of saturating inositol hexaphosphate (IHP). High-pressure experiments allowed for the observation of the dissociation of the hemoglobin dimer into monomers. From these measurements, we estimate the dimer dissociation constant to be between 0.1 and 1 nM. We compare the present results on the subunit affinities in hemoglobin obtained from steady-state and time-resolved fluorescence data with those obtained previously by using gel filtration, sedimentation, and kinetic techniques. These comparisons are indicative of a certain degree of conformational heterogeneity in the hemoglobin preparations. © 1990, American Chemical Society. All rights reserved.
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页码:9194 / 9202
页数:9
相关论文
共 52 条
[21]  
HARRIGAN T, 1989, Biophysical Journal, V55, p514A
[22]  
HAUGLAND RP, 1983, EXCITED STATES BIOPO, P34
[23]   HIGH-PRESSURE EFFECTS ON PROTEINS AND OTHER BIOMOLECULES [J].
HEREMANS, K .
ANNUAL REVIEW OF BIOPHYSICS AND BIOENGINEERING, 1982, 11 :1-21
[24]   WHAT IS BEST METHOD TO REMOVE 2,3-DIPHOSPHOGLYCERATE FROM HEMOGLOBIN [J].
JELKMANN, W ;
BAUER, C .
ANALYTICAL BIOCHEMISTRY, 1976, 75 (02) :382-388
[25]   EFFECT OF PHOSPHATE ON THE KINETICS OF ASSEMBLY OF OXYGENATED HEMOGLOBIN FROM ISOLATED ALPHA-CHAINS AND BETA-CHAINS [J].
KAWAMURA, Y ;
NAKAMURA, S .
JOURNAL OF BIOCHEMISTRY, 1983, 94 (06) :1851-1856
[26]   DISSOCIATION OF HEMOGLOBIN INTO SUBUNITS - MONOMER FORMATION AND INFLUENCE OF LIGANDS [J].
KELLETT, GL ;
SCHACHMAN, HK .
JOURNAL OF MOLECULAR BIOLOGY, 1971, 59 (03) :387-+
[27]   SIMULTANEOUS ANALYSIS OF MULTIPLE FLUORESCENCE DECAY CURVES - A GLOBAL APPROACH [J].
KNUTSON, JR ;
BEECHEM, JM ;
BRAND, L .
CHEMICAL PHYSICS LETTERS, 1983, 102 (06) :501-507
[28]  
MRABET NT, 1986, J BIOL CHEM, V261, P1111
[29]   PRESSURE-INDUCED REVERSIBLE DISSOCIATION OF ENOLASE [J].
PALADINI, AA ;
WEBER, G .
BIOCHEMISTRY, 1981, 20 (09) :2587-2593
[30]  
PALADINI AA, 1981, REV SCI INSTRUM, V53, P419