19F NMR Studies of the D-Galactose Chemosensory Receptor. 2. Ca(II) Binding Yields a Local Structural Change†
Open Access
- 30 April 1991
- journal article
- research article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 30 (17) , 4257-4261
- https://doi.org/10.1021/bi00231a022
Abstract
The Escherichia coli D-galactose and D-glucose receptor possesses a Ca(II)-binding site closely related in structure and metal-binding characteristics to the eukaryotic EF-hand sites. Only the structure of the Ca(II)-occupied site is known. To investigate the structural change triggered by Ca(II) and Sr(II) binding, we have used 19F NMR to probe five 5-fluorotryptophan (5F-Trp) and seven 3-fluorophenylalanine (3F-Phe) positions in the structure, extending the approach described in the preceding article. Of particular interest were two 5F-Trp residues near the N terminus of the Ca(II) site at positions 127 and 133. Substitution of the larger Sr(II) for Ca(II) triggered 19F NMR frequency shifts of the 5F-Trp127 and -133 resonances, indicating a detectable structural change in the Ca(II) site. In contrast, the three 5F-Trp resonances from distant regions of the structure exhibited no detectable frequency shifts. When the metal was removed from the Ca(II) site, the 5F-Trp127 and -133 frequencies shifted to a new value similar to that observed for free 5F-Trp in aqueous solvent, and this new frequency was a function of the H2O to D2O ratio, indicating that the residues had become solvent exposed. Metal removal yielded small or undetectable frequency shifts for the three distant 5F-Trp resonances and for four of the five resolved 3F-Phe resonances. The allosteric coupling of the metal and sugar binding sites was observed to be slight: depletion of metal ions was observed to reduce the D-galactose affinity of the receptor by 2-fold. Together the results indicate that the structural changes in the Ca(II) site are primarily localized in the region of the site. Removal of the metal ion from the site exposes the nearby 5F-Trp127 and -133 residues to the solvent, suggesting that the empty site has a more open structure. Evidence for a similar opening of eukaryotic EF-hand sites to solvent upon removal of metal is discussed. Such a structural change could play an important role in facilitating substrate binding and dissociation.Keywords
This publication has 8 references indexed in Scilit:
- Calcium(II) site specificity: effect of size and charge on metal ion binding to an EF-hand-like siteBiochemistry, 1990
- The calcium-binding site in the galactose chemoreceptor protein. Crystallographic and metal-binding studies.1989
- CRYSTAL STRUCTURES OF THE HELIX-LOOP-HELIX CALCIUM-BINDING PROTEINSAnnual Review of Biochemistry, 1989
- Sugar and Signal-Transducer Binding Sites of the Escherichia coli Galactose Chemoreceptor ProteinScience, 1988
- Refined crystal structure of troponin C from turkey skeletal muscle at 2·0 Å resolutionJournal of Molecular Biology, 1988
- Refined structure of chicken skeletal muscle troponin C in the two-calcium state at 2-A resolution.Journal of Biological Chemistry, 1988
- A novel calcium binding site in the galactose-binding protein of bacterial transport and chemotaxisNature, 1987
- Rates of ligand binding to periplasmic proteins involved in bacterial transport and chemotaxis.Journal of Biological Chemistry, 1983