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Título : Molecular dynamics at the receptor level of immunodominant myelin oligodendrocyte glycoprotein 35–55 epitope implicated in multiple sclerosis
Autor : Tzoupis, Haralambos
Michailidou, Elena
Mantzourani, Efthimia
Simal, Carmen
Tselios, Theodore
Palabras clave : Molecular dynamics
Myelin oligodendrocyte glycoprotein (MOG)
Bioactive conformation
T-cell receptor (TCR)
Human leukocyte antigen (HLA)
Multiple sclerosis (MS)
Fecha de publicación : 18-jun-2016
Editorial : Elsevier
Citación : Yannakakis, M. P.; Tzoupis, H.; Michailidou, E.; Mantzourani, E.; Simal, C. and Tselios, T. J. Mol. Graph. 2016, 68, 78-86
Resumen : Multiple Sclerosis (MS) is a common autoimmune disease whereby myelin is destroyed by the immune system. The disease is triggered by the stimulation of encephalitogenic T-cells via the formation of a trimolecular complex between the Human Leukocyte Antigen (HLA), an immunodominant epitope of myelin proteins and T-cell Receptor (TCR). Myelin Oligodendrocyte Glycoprotein (MOG) is located on the external surface of myelin and has been implicated in MS induction. The immunodominant 35–55 epitope of MOG is widely used for in vivo biological evaluation and immunological studies that are related with chronic Experimental Autoimmune Encephalomyelitis (EAE, animal model of MS), inflammatory diseases and MS. In this report, Molecular Dynamics (MD) simulations were used to explore the interactions of MOG35–55 at the receptor level. A detailed mapping of the developed interactions during the creation of the trimolecular complex is reported. This is the first attempt to gain an understanding of the molecular recognition of the MOG35–55 epitope by the HLA and TCR receptors. During the formation of the trimolecular complex, the residues Arg41 and Arg46 of MOG35–55 have been confirmed to serve as TCR anchors while Tyr40 interacts with HLA. The present structural findings indicate that the Arg at positions 41 and 46 is a key residue for the stimulation of the encephalitogenic T-cells.
Descripción : Las variantes de péptidos [hMOG35-55 (Ala41) y hMOG35-55 (Ala41,46)] han demostrado actuar como inhibidores de la EAE, que es el modelo animal para la EM. La información recopilada durante nuestra investigación confirma que la mutación de los residuos clave en hMOG35-55 conduce a la unión competitiva con el receptor HLA y a la pérdida de las interacciones específicas con el TCR, evitando así la formación del complejo trimolecular. Este trabajo proporciona un estudio detallado sobre las interacciones y cambios conformacionales observados en la formación de complejo trimolecular (TCR-hMOG35-55-HLA DR2 receptor) y destaca las interacciones principales del epítopo hMOG35-55.
URI : https://ria.asturias.es/RIA/handle/123456789/7427
ISBN : 1093-3263
Aparece en las colecciones: Open Access DRIVERset
Química

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