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RESEARCH PRODUCT
Myelin-specific T cells also recognize neuronal autoantigen in a transgenic mouse model of multiple sclerosis
Gurumoorthy KrishnamoorthyReinhard MenteleKlaus DornmairKlaus DornmairLennart T. MarsHelena S. DominguesHelena S. DominguesAvraham Ben-nunRoland S. LiblauAmit SaxenaHans LassmannHartmut WekerleFlorian C. KurschusFlorian C. Kurschussubject
Encephalomyelitis Autoimmune ExperimentalMultiple SclerosisT-LymphocytesMolecular Sequence DataReceptors Antigen T-CellMice TransgenicCross ReactionsMajor histocompatibility complexAutoantigensGeneral Biochemistry Genetics and Molecular BiologyEpitopeMyelin oligodendrocyte glycoproteinMice03 medical and health sciencesMyelin0302 clinical medicineAntigenNeurofilament ProteinsAnimalsMedicineAmino Acid SequenceMyelin Sheath030304 developmental biologyAutoimmune disease0303 health sciencesbiologybusiness.industryExperimental autoimmune encephalomyelitisT-cell receptorGeneral Medicinemedicine.disease3. Good healthMice Inbred C57BLDisease Models AnimalMyelin-Associated Glycoproteinmedicine.anatomical_structureImmunologybiology.proteinMyelin-Oligodendrocyte GlycoproteinbusinessMyelin Proteins030215 immunologydescription
T-cell recognition of autoantigens is important in the development of autoimmune disease. Now, Hartmut Wekerle and his colleagues demonstrate that organ-specific autoimmune responses may be driven by T cells that simultaneously respond to two different autoantigens found within the same target tissue. We describe here the paradoxical development of spontaneous experimental autoimmune encephalomyelitis (EAE) in transgenic mice expressing a myelin oligodendrocyte glycoprotein (MOG)-specific T cell antigen receptor (TCR) in the absence of MOG. We report that in Mog-deficient mice (Mog−/−), the autoimmune response by transgenic T cells is redirected to a neuronal cytoskeletal self antigen, neurofilament-M (NF-M). Although components of radically different protein classes, the cross-reacting major histocompatibility complex I-Ab–restricted epitope sequences of MOG35–55 and NF-M18–30 share essential TCR contact positions. This pattern of cross-reaction is not specific to the transgenic TCR but is also commonly seen in MOG35–55–I-Ab–reactive T cells. We propose that in the C57BL/6 mouse, MOG and NF-M response components add up to overcome the general resistance of this strain to experimental induction of autoimmunity. Similar cumulative responses against more than one autoantigen may have a role in spontaneously developing human autoimmune diseases.
year | journal | country | edition | language |
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2008-06-10 | Nature Medicine |