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A Spontaneous Model of Experimental Autoimmune Encephalomyelitis Provides Evidence of MOG-Specific B Cell Recruitment and Clonal Expansion

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Journal Front Immunol
Date 2022 Feb 21
PMID 35185870
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Abstract

The key role of B cells in the pathophysiology of multiple sclerosis (MS) is supported by the presence of oligoclonal bands in the cerebrospinal fluid, by the association of meningeal ectopic B cell follicles with demyelination, axonal loss and reduction of astrocytes, as well as by the high efficacy of B lymphocyte depletion in controlling inflammatory parameters of MS. Here, we use a spontaneous model of experimental autoimmune encephalomyelitis (EAE) to study the clonality of the B cell response targeting myelin oligodendrocyte glycoprotein (MOG). In particular, 94% of SJL/j mice expressing an I-A: MOG specific transgenic T cell receptor (TCR) spontaneously develop a chronic paralytic EAE between the age of 60-500 days. The immune response is triggered by the microbiota in the gut-associated lymphoid tissue, while there is evidence that the maturation of the autoimmune demyelinating response might occur in the cervical lymph nodes owing to local brain drainage. Using MOG-protein-tetramers we tracked the autoantigen-specific B cells and localized their enrichment to the cervical lymph nodes and among the brain immune infiltrate. MOG-specific IgG1 antibodies were detected in the serum of diseased TCR mice and proved pathogenic upon adoptive transfer into disease-prone recipients. The ontogeny of the MOG-specific humoral response preceded disease onset coherent with their contribution to EAE initiation. This humoral response was, however, not sufficient for disease induction as MOG-antibodies could be detected at the age of 69 days in a model with an average age of onset of 197 days. To assess the MOG-specific B cell repertoire we FACS-sorted MOG-tetramer binding cells and clonally expand them to sequence the paratopes of the IgG heavy chain and kappa light chains. Despite the fragility of clonally expanding MOG-tetramer binding effector B cells, our results indicate the selection of a common CDR-3 clonotype among the Igk light chains derived from both disease-free and diseased TCR mice. Our study demonstrates the pre-clinical mobilization of the MOG-specific B cell response within the brain-draining cervical lymph nodes, and reiterates that MOG antibodies are a poor biomarker of disease onset and progression.

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References
1.
Machado-Santos J, Saji E, Troscher A, Paunovic M, Liblau R, Gabriely G . The compartmentalized inflammatory response in the multiple sclerosis brain is composed of tissue-resident CD8+ T lymphocytes and B cells. Brain. 2018; 141(7):2066-2082. PMC: 6022681. DOI: 10.1093/brain/awy151. View

2.
Haniuda K, Nojima T, Kitamura D . In Vitro-Induced Germinal Center B Cell Culture System. Methods Mol Biol. 2017; 1623:125-133. DOI: 10.1007/978-1-4939-7095-7_11. View

3.
Goebels N, Hofstetter H, Schmidt S, Brunner C, Wekerle H, Hohlfeld R . Repertoire dynamics of autoreactive T cells in multiple sclerosis patients and healthy subjects: epitope spreading versus clonal persistence. Brain. 2000; 123 Pt 3:508-18. DOI: 10.1093/brain/123.3.508. View

4.
Magliozzi R, Howell O, Vora A, Serafini B, Nicholas R, Puopolo M . Meningeal B-cell follicles in secondary progressive multiple sclerosis associate with early onset of disease and severe cortical pathology. Brain. 2007; 130(Pt 4):1089-104. DOI: 10.1093/brain/awm038. View

5.
Perera N, Wiesmuller K, Larsen M, Schacher B, Eickholz P, Borregaard N . NSP4 is stored in azurophil granules and released by activated neutrophils as active endoprotease with restricted specificity. J Immunol. 2013; 191(5):2700-7. DOI: 10.4049/jimmunol.1301293. View