Binding of monovalent anions to human serum transferrin

被引:36
作者
Harris, WR [1 ]
Cafferty, AM [1 ]
Abdollahi, S [1 ]
Trankler, K [1 ]
机构
[1] Univ Missouri, Dept Chem, St Louis, MO 63121 USA
来源
BIOCHIMICA ET BIOPHYSICA ACTA-PROTEIN STRUCTURE AND MOLECULAR ENZYMOLOGY | 1998年 / 1383卷 / 02期
关键词
anion binding; serum transferrin; thermodynamics; terbium;
D O I
10.1016/S0167-4838(97)00152-0
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
Serum transferrin is the protein whose primary function is to bind iron and transport it through the blood. Apotransferrin has two specific metal-binding sites that bind a variety of metal ions in addition to the ferric ion. The distinguishing feature of the transferrins is that a "synergistic" bicarbonate anion is bound along with the metal ion to form a stable Fe3+-CO3-Tf ternary complex. Previous research has shown that apotransferrin will also bind divalent anions such as phosphate and sulfate. Difference UV spectroscopy has now been used to show that a series of monovalent anions bind weakly to apotransferrin. Equilibrium constants for the binding of chloride, perchlorate, bromide, fluoride and Hepes have been calculated. A reaction scheme for the binding of anions is proposed which predicts that the binding of nonsynergistic anions to apotransferrin will interfere with metal binding by competing directly with the binding of the synergistic bicarbonate anion. Difference UV data are presented which demonstrate this type of competition between nonsynergistic anions and Tb3+. Competition from the nonsynergistic anions follows the order HPO42- > SO42- approximate to F- > ClO4- approximate to Cl- approximate to Br-. Speciation calculations have been performed to determine the concentrations of anion-apotransferrin complexes in Hepes and Tris buffers and in human serum and to estimate the extent to which competition from anions in the buffer will interfere with metal-binding to apotransferrin. (C) 1998 Elsevier Science B.V.
引用
收藏
页码:197 / 210
页数:14
相关论文
共 46 条
[21]   The ionization constant of carbonic acid in water and the solubility of carbon dioxide in water and aqueous salt solutions from 0 to 50 degrees [J].
Harned, HS ;
Davis, R .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1943, 65 :2030-2037
[22]  
Harris DC, 1989, IRON CARRIERS IRON P, P239
[23]  
Harris W.R., 1993, TRENDS INORG CHEM, V3, P559
[24]   THERMODYNAMICS OF ANION BINDING TO HUMAN-SERUM TRANSFERRIN [J].
HARRIS, WR .
BIOCHEMISTRY, 1985, 24 (25) :7412-7418
[25]   SITE SELECTIVITY IN THE BINDING OF INORGANIC ANIONS TO SERUM TRANSFERRIN [J].
HARRIS, WR ;
NESSETTOLLEFSON, D ;
STENBACK, JZ ;
MOHAMEDHANI, N .
JOURNAL OF INORGANIC BIOCHEMISTRY, 1990, 38 (03) :175-183
[26]   BINDING OF PHOSPHONATE CHELATING-AGENTS AND PYROPHOSPHATE TO APOTRANSFERRIN [J].
HARRIS, WR ;
NESSETTOLLEFSON, D .
BIOCHEMISTRY, 1991, 30 (28) :6930-6936
[27]   DIFFERENCE ULTRAVIOLET SPECTROSCOPIC STUDIES ON THE BINDING OF LANTHANIDES TO HUMAN SERUM TRANSFERRIN [J].
HARRIS, WR ;
CHEN, Y .
INORGANIC CHEMISTRY, 1992, 31 (24) :5001-5006
[28]   THE BICARBONATE-DEPENDENCE OF ZINC(II)-TRANSFERRIN BINDING [J].
HARRIS, WR ;
STENBACK, JZ .
JOURNAL OF INORGANIC BIOCHEMISTRY, 1988, 33 (03) :211-223
[29]  
HARRIS WR, 1992, CLIN CHEM, V38, P1809
[30]  
HARRIS WR, 1989, MINERAL ABSORPTION M, P67