Luminescence Energy Transfer Studies of C-Reactive Protein. Binding of Terbium (III) Ions in C-Reactive Protein
- 1 January 1983
- journal article
- research article
- Published by Taylor & Francis in Immunological Communications
- Vol. 12 (3) , 291-300
- https://doi.org/10.3109/08820138309050751
Abstract
The acute phase of inflammation is characterized by numerous changes in blood composition, perhaps the most dramatic of these being the elevation of C-reactive protein levels. C-reactive protein (CRP) is known to bind to molecules containing phosphocholine-substituents following reaction with Ca2+ ions. Luminescence energy transfer (LET) has been used effectively to study the Ca2+ and Mg2+ binding properties of many proteins by employing appropriate lanthanides (III). We have used Tb3+ as an isomorphous analogue to study Ca2+ binding to CRP. Energy transfer occurs effectively and demonstrates the importance of aromatic residues (viz., tyrosine and tryptophan) in the binding of Tb3+. The binding of Tb3+ is remarkably dependent on the pH and indicates the requirement of a deprotonated residue in the pH range 6.4 ± 0.2 for effective Tb3+ binding. A 50-fold molar excess of Ca2+ is sufficient to displace the Tb3+ suggesting that Tb3+ is bound with greater affinity to CRP than the natural analogue Ca2+. We propose that Tb3+ (by inference Ca2+) binding takes place near the CRP subunit disulfide bond, where two histidine residues are present. The pH dependency of Tb3+ binding is best explained by the deprotonation of a histidine residue(s) in CRP.This publication has 16 references indexed in Scilit:
- Characterization of the calcium-binding sites of the purified acetylcholine receptor and identification of the calcium-binding subunitBiochemistry, 1978
- Calcium binding site of trypsin as probed by lanthanidesBiochemistry, 1977
- C-reactive protein in the rabbit: Isolation, characterization and binding affinity to phosphocholineImmunochemistry, 1977
- Characterization of C-reactive protein and the complement subcomponent C1t as homologous proteins displaying cyclic pentameric symmetry (pentraxins).Proceedings of the National Academy of Sciences, 1977
- Terbium(III) emission as a probe of calcium(II) binding sites in proteinsJournal of the American Chemical Society, 1976
- The lanthanides as spectroscopic and magnetic resonance probes in biological systemsThe Science of Nature, 1975
- Specificity of C-Reactive Protein for Choline Phosphate Residues of Pneumococcal C-PolysaccharideExperimental Biology and Medicine, 1971
- BINDING PROPERTIES AND SPECIFICITY OF C-REACTIVE PROTEINProceedings of the National Academy of Sciences, 1967
- C-reactive protein: a molecule composed of subunits.Proceedings of the National Academy of Sciences, 1965
- SEROLOGICAL REACTIONS IN PNEUMONIA WITH A NON-PROTEIN SOMATIC FRACTION OF PNEUMOCOCCUSThe Journal of Experimental Medicine, 1930