NFM Cross-Reactivity to MOG Does Not Expand a Critical Threshold Level of High-Affinity T Cells Necessary for Onset of Demyelinating Disease
Of interest to the etiology of demyelinating autoimmune disease is the potential to aberrantly activate CD4 T cells due to cross-recognition of multiple self-epitopes such as has been suggested for myelin oligodendrocyte glycoprotein epitope 35-55 (MOG ) and neurofilament medium protein epitope 15-3...
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Veröffentlicht in: | The Journal of immunology (1950) 2017-10, Vol.199 (8), p.2680-2691 |
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Zusammenfassung: | Of interest to the etiology of demyelinating autoimmune disease is the potential to aberrantly activate CD4
T cells due to cross-recognition of multiple self-epitopes such as has been suggested for myelin oligodendrocyte glycoprotein epitope 35-55 (MOG
) and neurofilament medium protein epitope 15-35 (NFM
). NFM
is immunogenic in C57BL/6 mice but fails to induce demyelinating disease by polyclonal T cells despite having the same TCR contact residues as MOG
, a known encephalitogenic Ag. Despite reported cross-reactivity with MOG-specific T cells, the polyclonal response to NFM
did not expand threshold numbers of MOG
tetramer-positive T cells. Furthermore, NFM lacked functional synergy with MOG to promote experimental autoimmune encephalomyelitis because NFM-deficient synonymous with knockout mice developed an identical disease course to wild-type mice after challenge with MOG
Single-cell analysis of encephalitogenic T cells using the peptide:MHC monomer-based two-dimensional micropipette adhesion frequency assay confirmed that NFM was not a critical Ag driving demyelinating disease because NFM
-specific T cells in the CNS were predominantly reactive to MOG
The absence of NFM contribution to disease allowed mapping of the amino acids required for encephalitogenicity and expansion of high-affinity, MOG-specific T cells that defined the polyclonal response. Alterations of N-terminal residues outside of the NFM
core nonamer promoted expansion of high-affinity, MOG
tetramer-positive T cells and promoted consistent experimental autoimmune encephalomyelitis induction, unlike mice challenged with NFM
Although NFM
is immunogenic and cross-reactive with MOG at the polyclonal level, it fails to expand a threshold level of encephalitogenic, high-affinity MOG-specific T cells. |
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ISSN: | 0022-1767 1550-6606 |
DOI: | 10.4049/jimmunol.1700792 |