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Molecular dynamics simulation study on the interaction of KRN 7000 and three analogues with human CD1d
Authors:Eric Hénon  Manuel Dauchez  Aline Banchet
Institution:a Institut de Chimie Moléculaire de Reims, CNRS UMR 6229, Université de Reims Champagne-Ardenne, BP 1039, 51687 REIMS Cedex, France
b MEDyC, SiRMa, CNRS UMR 6237, Université de Reims Champagne-Ardenne, BP 1039, 51687 REIMS Cedex, France
c Department of Chemistry, Imperial College of Science Technology and Medicine, South Kensington, London SW7 2AZ, United Kingdom
Abstract:Many analogues of KRN 7000, a synthetic glycolipid (α-galactosylceramide) exhibiting immuno-stimulatory activity and antitumor properties, were previously synthesized and tested in order to understand the reasons for the resulting biological activity and Th1/Th2 cytokine profile. Principles have been established for the interaction of such glycolipids with the human CD1d molecule but the exact mechanism by which different ligands with the same polar head elicit distinct biological responses remains unclear. Based on these experiments and on the available crystal structures, protein-ligand interactions are explored using molecular dynamics simulations. Hydrogen bond interactions are examined with regard to the polar group orientation. The influence of modulations on the dynamic behavior of the CD1d-glycolipid complex is addressed. Overall, our data support the mechanism by which the shortening of the α-GalCer sphingosine chain causes a significant twist of the CD1d α1 helix structure from residue Phe84 that affects the position of CD1d residues involved in the TCR recognition.
Keywords:KRN 7000  Ligand-protein interaction  CD1d  Molecular dynamics
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