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Structure of a glycoconjugate in solution and in complex with an antibody Fv fragment
Authors:Low, D.G.   Probert, M. A.   Embleton, G.   Seshadri, K.   Field, R. A.   Homans, S. W.   Windust, J.   Davis, P. J.
Affiliation:Centre for Biomolecular Sciences. The Purdie Building, University of St. Andrews St. Andrews, Fife. KY 16 9ST United Kingdom
1Unilever Research. Colworth Laboratory Colworth House. Shambrook, MK44 1LQ
Abstract:By use of heteronuclear (13c, 1H) NMR methods, the threedimensionalstructure and dynamia of the glycoconjugate estrone-3-glucuronide(E3G) uniformly 13c enriched in the glucuronic acid moiety hasbeen probed both in free solution and in association with ananti-E3G antibody singlechain Fv fragment. The glycan is foundto exist in multiple conformations in free solution, with particularlylarge torsional fluctuations about the glycosidic linkage {psi}.Resonance assignments and distance restraints for the glycococonjugatein the bound state were obtained from heteronuclear protonarbon-carbon-proton-COSYand isotopeedited NOESY techniques, respectively. Quantitationof the NOE data with a full-relaxation matrix approach showedthat the antibody selects a conformation from the solution repertoirewhich does not correspond with either of the two lowest energyconformations of the free glycan, and the internal energy ofthe glycan in the bound state is estimated to be at most {bsim}15kcal/mol higher than the global minimum energy conformation.The glucuronide moiety undergoes a stacking interaction withan aromatic ring in the binding site, and both ring-currentshifts and nuclear Overhauser effects computed from the predictedboundstate conformation are in good agreement with experiment.The bound-state conformation is also in goad agreement withpreliminary x-ray data on a related complex. NMR estrone antibody ring current shifts
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