Title | Detection and characterization of xenon-binding sites in proteins by Xe-129 NMR spectroscopy |
Publication Type | Journal Article |
Year of Publication | 2002 |
Authors | Rubin S.M, Lee S.Y, Ruiz E.J, Pines A, Wemmer D.E |
Journal | Journal of Molecular Biology |
Volume | 322 |
Issue | 2 |
Pagination | 425-440 |
Date Published | Sep 13 |
ISBN Number | 0022-2836 |
Accession Number | WOS:000178230500014 |
Keywords | nonpolar cavity |
Abstract | Xenon-binding sites in proteins have led to a number of applications of xenon in biochemical and structural studies. Here we further develop the utility of Xe-129 NMR in characterizing specific xenon-protein interactions. The sensitivity of the Xe-129 chemical shift to its local environment and the intense signals attainable by optical pumping make xenon a useful NMR reporter of its own interactions with proteins. A method for detecting specific xenon-binding interactions by analysis of Xe-129 chemical shift data is illustrated using the maltose binding protein (MBP) from Escherichia coli as an example. The crystal structure of MBP in the presence of 8 atm of xenon confirms the binding site determined from NMR data. Changes in the structure of the xenon-binding cavity upon the binding of maltose by the protein can account for the sensitivity of the Xe-129 chemical shift to MBP conformation. Xe-129 NMR data for xenon in solution with a number of cavity containing phage T4 lysozyme mutants show that xenon can report on cavity structure. In particular, a correlation exists between cavity size and the binding-induced Xe-129 chemical shift. Further applications of Xe-129 NMR to biochemical assays, including the screening of proteins for xenon binding for crystallography are considered. (C) 2002 Elsevier Science Ltd. All rights reserved |
URL | <Go to ISI>://WOS:000178230500014 |
DOI | 10.1016/S0022-2836(02)00739-8 |
Short Title | Detection and characterization of xenon-binding sites in proteins by Xe-129 NMR spectroscopy |
Detection and characterization of xenon-binding sites in proteins by Xe-129 NMR spectroscopy
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