Proton NMR studies of synthetic peptide analogs of calcium-binding site III of rabbit skeletal troponin C: Effect on the lanthanum affinity of the interchange of aspartic acid and asparagine residues at the metal ion coordinating positions
- 1 May 1988
- journal article
- research article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 27 (11) , 4198-4206
- https://doi.org/10.1021/bi00411a043
Abstract
The present work determines the contribution of liganding aspartic acid (Asp) residues, at the +X, +Y, and +Z metal ion coordinating positions, to the lanthanum(3+) (La3+) ion binding affinity of synthetic analogues of calcium-binding site III of rabbit skeletal troponin C. Eight 13-residue synthetic analogues were prepared by solid-phase synthesis; the primary sequences of these analogues represent all possible combinations having aspartic acid and asparagine at the +X, +Y, and +Z positions. High-field proton nuclear magnetic resonance (NMR) spectroscopy was used to monitor the binding of the La3+ ion to each of the analogues. Comparison of the chemical shift changes showed large variations in the magnitude of the shift; these were reflected in the La3+ ion association constants determined for each analogue. The association constants ranged from 9.1 .times. 102 M-1 to 2.5 .times. 105 M-1. It was observed that those analogues with the larger number of acidic residues to coordinate the La3+ ion yielded the higher association constants. The La3+ ion binding results demonstrate that the Asp residues at the positions of study contribute equally and in an additive manner to the association constant and that the presence of neighboring Asp residues at either the +X and +Y, the +Y and +Z, or the +X and +Y and +Z metal ion coordinating positions introduced dentate-dentate repulsion, which acts as to detract from the La3+ ion association constant of the analogues.This publication has 19 references indexed in Scilit:
- Lanthanide-induced peptide folding: variations in lanthanide affinity and induced peptide conformationBiochemistry, 1983
- Synthetic peptide analogs of skeletal troponin C: Fluorescence studies of analogs of the low-affinity calcium-binding site IIArchives of Biochemistry and Biophysics, 1983
- Proton nuclear magnetic resonance investigation of synthetic calcium-binding peptidesBiochemistry, 1982
- Calcium-induced protein folding. Structure-affinity relationships in synthetic analogs of the helix-loop-helix calcium binding unit.Journal of Biological Chemistry, 1981
- Co-operativity and calcium/magnesium binding to troponin C and muscle calcium binding parvalbumin: An hypothesisJournal of Theoretical Biology, 1980
- Synthetic analog of a high affinity calcium binding site in rabbit skeletal troponin C.Journal of Biological Chemistry, 1980
- Calcium binding by troponin-C and homologs is correlated with the position and linear density of “β-turn forming” residuesJournal of Theoretical Biology, 1979
- 1H‐nmr parameters of the common amino acid residues measured in aqueous solutions of the linear tetrapeptides H‐Gly‐Gly‐X‐L‐Ala‐OHBiopolymers, 1979
- Proteolytic fragments of troponin C. Localization of high and low affinity Ca2+ binding sites and interactions with troponin I and troponin TJournal of Biological Chemistry, 1978
- Binding of calcium by parvalbumin fragmentsBiochimica et Biophysica Acta (BBA) - Protein Structure, 1978