Direct Measurement of Small Ligand-Induced Conformational Changes in the Aspartate Chemoreceptor Using EPR
- 1 May 1998
- journal article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 37 (20) , 7062-7069
- https://doi.org/10.1021/bi980305e
Abstract
Ligand-binding-induced conformational changes in the Salmonella typhimurium aspartate receptor were studied using spin-labeling electron paramagnetic resonance. Cysteine residues, introduced by site-directed mutagenesis at several positions in the aspartate receptor periplasmic domain, were used to attach covalently a thiol-specific spin label. The electron paramagnetic resonance spectra of these labeled proteins were obtained in the presence and absence of the ligand aspartate, and used to calculate the distance change between spin labels. The results support a model in which transmembrane signaling is executed by a combined movement of α helix 4 (which leads into transmembrane domain 2) relative to α helix 1 (connected to transmembrane domain 1), as well as a coming together of the two subunits. Ligand binding causes spin labels at position 39 and 179 (within one subunit) to move further from each other and spin labels at position 39 and 39‘ (between two subunits) to move closer to each other. Both of these changes are very smallless than 2.5 Å. No similar changes were detected in any aspartate receptor samples solubilized in detergent, suggesting that the membrane is required for these conformational changes. This is the first case of physically measured ligand-induced changes in a full-length 1−2 transmembrane domain receptor, and the results suggest that very small ligand-induced movements can result in large effects on the activity of downstream proteins.Keywords
This publication has 9 references indexed in Scilit:
- Transient channel-opening in bacteriorhodopsin: an EPR study 1 1Edited by D. RessJournal of Molecular Biology, 1997
- Molecular distances from dipolar coupled spin-labels: the global analysis of multifrequency continuous wave electron paramagnetic resonance dataBiophysical Journal, 1997
- A Model for Transmembrane Signalling by the Aspartate Receptor Based on Random-cassette Mutagenesis and Site-directed Disulphide Cross-linkingJournal of Molecular Biology, 1995
- Lock On/Off Disulfides Identify the Transmembrane Signaling Helix of the Aspartate ReceptorJournal of Biological Chemistry, 1995
- Structural similarities between the aspartate receptor of bacterial chemotaxis and the trp repressor of E. coli Implications for transmembrane signalingFEBS Letters, 1992
- Molecular Characterization of Helix-Loop-Helix PeptidesScience, 1992
- Resolved Electron-Electron Spin-Spin Splittings in EPR SpectraPublished by Springer Nature ,1989
- Sensory transduction in Escherichia coli : Role of a protein methylation reaction in sensory adaptationProceedings of the National Academy of Sciences, 1977
- Spin-label study of hemoglobin conformations in solution.Proceedings of the National Academy of Sciences, 1967