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Design,synthesis, biological evaluation,and modeling of a non-carbohydrate antagonist of the myelin-associated glycoprotein
Authors:Oliver Schwardt  Hendrik Koliwer-Brandl  Raphael Zimmerli  Stefanie Mesch  Gianluca Rossato  Morena Spreafico  Angelo Vedani  Sørge Kelm  Beat Ernst
Institution:1. Institute of Molecular Pharmacy, Pharmacenter, University of Basel, Klingelbergstrasse 50, CH-4056 Basel, Switzerland;2. Department of Physiological Biochemistry, University of Bremen, D-28334 Bremen, Germany
Abstract:Broad modifications of various positions of the minimal natural epitope recognized by the myelin-associated glycoprotein (MAG), a blocker of regeneration of neurite injuries, produced sialosides with nanomolar affinities. However, important pharmacokinetic issues, for example, the metabolic stability of these sialosides, remain to be addressed. For this reason, the novel non-carbohydrate mimic 3 was designed and synthesized from (?)-quinic acid. For the design of 3, previously identified beneficial modifications of side chains of Neu5Ac were combined with the replacement of the ring oxygen by a methylene group and the substitution of the C(4)-OH by an acetamide. Although docking experiments to a homology model of MAG revealed that mimic 3 forms all but one of the essential hydrogen bonds identified for the earlier reported lead 2, its affinity was substantially reduced. Extensive molecular-dynamics simulation disclosed that the missing hydrogen bond of the former C(8)-OH leads to a change of the orientation of the side chain. As a consequence, an important hydrophobic contact is compromised leading to a loss of affinity.
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