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First published on July 17, 2006; DOI: 10.1124/mol.106.027185


0026-895X/06/7004-1230-1235$20.00
Mol Pharmacol 70:1230-1235, 2006

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Solution NMR of Acetylcholine Binding Protein Reveals Agonist-Mediated Conformational Change of the C-Loop

Fan Gao, Georges Mer, Marco Tonelli, Scott B. Hansen, Thomas P. Burghardt, Palmer Taylor, and Steven M. Sine

Receptor Biology Laboratory, Department of Physiology and Biomedical Engineering (F.G., S.M.S.) and Department of Biochemistry and Molecular Biology (G.M., T.P.B.), Mayo Clinic College of Medicine, Rochester, Minnesota; Department of Pharmacology, University of California San Diego, La Jolla, California (S.B.H., P.T.); and National Magnetic Resonance Facility, University of Wisconsin-Madison, Madison, Wisconsin (M.T.)

Previous X-ray crystallography, molecular dynamics simulation, fluorescence spectroscopy, and deuterium-hydrogen exchange of acetylcholine binding protein (AChBP) suggest that after binding of the agonist, the C-loop at the periphery of the binding site draws inward to cap the site and envelop the agonist. In this study, we use high-resolution solution NMR to monitor changes in the chemical environment of the C-loop without and with acetylcholine (ACh) bound. Substitution of [15N]cysteine for the native cysteines 123, 136, 187, and 188 provided intrinsic monitors of the chemical environments of the Cys- and C-loops, respectively. Two-dimensional transverse relaxation-optimized spectroscopy 15N-1H HSQC spectroscopy of apo-AChBP revealed seven well resolved cross-peaks for the group of cysteines. The spectrum of AChBP with Ser substituted for Cys 187 and 188 shows only two main cross-peaks, corresponding to Cys 123 and 136 from the Cys-loop, enabling resonance assignments. After binding of ACh, the five cross-peaks associated with cysteines from the C-loop condense into two predominant cross-peaks not observed in the spectrum from the apo protein, indicating a restricted range of conformations and change in chemical environment of the C-loop. The results show that isotopic cysteine can be incorporated into specified positions of AChBP expressed from a eukaryotic source, that the C-loop assumes multiple conformations without ACh, but that its conformation becomes restricted with ACh bound. The collective findings suggest a structural mechanism for agonist recognition in AChBP and related Cys-loop receptors.


Received May 30, 2006; accepted July 17, 2006

Address correspondence to: Steven M. Sine, Receptor Biology Laboratory, Department of Physiology and Biomedical Engineering, Mayo Clinic College of Medicine, Rochester MN 55905. E-mail: sine{at}mayo.edu.




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