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Myelin Oligodendrocyte Glycoprotein MOG35-55 Induced Experimental Autoimmune Encephalomyelitis EAE in C57BL/6 Mice
Published on: April 15, 2014
Cyclic MOG35-55 ameliorates clinical and neuropathological features of experimental autoimmune encephalomyelitis
Athanasios Lourbopoulos1, George Deraos2, Minos-Timotheos Matsoukas3
1Laboratory of Experimental Neurology and Neuroimmunology, B' Department of Neurology, AHEPA University Hospital, Thessaloniki, Greece.
Abstract:
EAE is induced to susceptible mice using linear peptides of myelin proteins of the central nervous system. Specific peptide motifs within the peptide-binding groove of the MHC peptide-complex determines the affinity of the peptide in each animal and the consequent T-cell receptor recognition and activation of the cell. Altered peptide ligand (APL) vaccination is a novel approach based on an effort to induce T-cell tolerance or alter cytokine profile from pro-inflammatory to anti-inflammatory. In the present study we synthesized the MOG35-55 peptide and altered its 3-dimensional conformation to make it a cyclic one (c-MOG35-55). EAE was induced in C57BL/6 mice and pathology was studied on acute and chronic phase of the disease. Our data indicates that c-MOG35-55 peptide alone induces a mild transient acute phase without chronic axonopathy. Administration of the c-MOG35-55 peptide at a 1:1 ratio during disease induction significantly ameliorates clinical disease and underlying pathology, such as demyelination and axonopathy in the acute and chronic phases. Binding and structural studies revealed milder interactions between the c-MOG35-55 and mouse or human MHC class II alleles (H2-IAb and HLA-DR2). Collectively, we provide data supporting for the first time the concept that the cyclic modification of an established encephalitogenic peptide ameliorates the clinical outcomes and underlying pathological processes of EAE. Such a cyclic modification of linear peptides could provide a novel treatment approach for future, patient-selective, immunomodulative treatments of multiple sclerosis.
Insights
Cyclic MOG peptide (c-MOG35-55) vaccination reduces EAE severity and pathology. This approach offers potential for new multiple sclerosis treatments by inducing tolerance and reducing inflammation.
Area of Science:
- Neuroimmunology
- Immunology
- Molecular Biology
Background:
- Experimental autoimmune encephalomyelitis (EAE) is a mouse model for multiple sclerosis (MS).
- Altered peptide ligand (APL) vaccination aims to induce immune tolerance.
- Myelin oligodendrocyte glycoprotein (MOG) peptides are encephalitogenic in EAE.
Purpose of the Study:
- To synthesize a cyclic MOG35-55 peptide (c-MOG35-55).
- To evaluate the therapeutic potential of c-MOG35-55 in EAE.
- To investigate the impact of cyclic modification on peptide-MHC interactions.
Main Methods:
- Synthesis of cyclic MOG35-55 peptide.
- Induction of EAE in C57BL/6 mice.
- Clinical and pathological assessment of EAE.
- Binding and structural studies of peptide-MHC interactions.
Main Results:
- c-MOG35-55 alone induced mild, transient EAE without chronic axonopathy.
- Administration of c-MOG35-55 significantly ameliorated clinical EAE and pathology (demyelination, axonopathy).
- Cyclic modification resulted in weaker binding to MHC class II alleles.
Conclusions:
- Cyclic modification of encephalitogenic peptides can ameliorate EAE.
- c-MOG35-55 demonstrates therapeutic potential for autoimmune CNS diseases.
- This strategy may lead to patient-selective immunomodulative treatments for MS.

