Abstract / Summary
Multiple sclerosis (MS) is an autoinflammatory disease of the central nervous system (CNS). Epstein–Barr virus (EBV) encodes for EBNA-1 381-452 , which induces autoreactive immune responses against distinct CNS derived proteins (GlialCAM 370-389 , CRYAB 2-21 , MBP 205-224 , ANO2 135-154 ). Although EBV infection is considered essential for MS development, CNS-specific autoimmune responses may also be present in putatively EBV EBNA-1-seronegative patients, warranting further investigation. We studied 548 EBV EBNA-1 seropositive and 30 EBV EBNA-1 seronegative pediatric-onset MS (POMS) patients, along with 578 matched controls. CNS specific antibodies were significantly more prevalent in EBV EBNA-1 seropositive POMS patients (92.2%) than in EBV EBNA-1 seropositive controls (56.3%, P < 0.0001). However, high CNS specific antibody levels were also found in 56.6% of EBV EBNA-1 seronegative POMS patients and 17.4% of EBV EBNA-1 seronegative controls. These findings suggest that while EBV infection amplifies CNS specific autoimmune responses, high-level CNS autoreactive autoimmune responses can also occur independently of EBV EBNA-1. We further evaluated why only some individuals with high-level CNS autoreactive antibody titers develop MS. Mechanistically, we demonstrate that autoreactive immune responses are effectively controlled by NKG2C + and NKG2D + natural killer (NK) cells. These findings indicate that CNS-specific autoimmunity and impaired NK cell regulation, rather than EBV alone, are central to MS risk.