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Published on: September 26, 2012
Antecedent infections in Fisher syndrome: a common pathogenesis of molecular mimicry
1Department of Neurology, Dokkyo University School of Medicine, Shimotsuga, Tochigi, Japan. kogamrk@dokkyomed.ac.jp
Objective:
To assess the production mechanism of anti-GQ1b autoantibody in Fisher syndrome (FS).
Methods:
The authors conducted a prospective case-control serologic study of five antecedent infections (Campylobacter jejuni, cytomegalovirus, Epstein-Barr virus, Mycoplasma pneumoniae, and Haemophilus influenzae) in 73 patients with FS and 73 sex- and age-matched hospital controls (HCs). Serologic evidence in FS patients of C. jejuni (21%) and H. influenzae (8%) infections was present significantly more often than in the HCs. None of the five pathogens examined was found in the 49 (67%) patients with FS. Anti-GQ1b IgG antibody was detected in most FS patients infected with C. jejuni or H. influenzae. Mass spectrometry analysis identified a C. jejuni strain (CF93-6) carrying a GT1a-like lipo-oligosaccharide (LOS) that had been isolated from an FS patient. Immunization of complex ganglioside-lacking knockout mice with the GT1a-like LOS generated IgG class monoclonal antibodies (mAbs) that reacted with GQ1b and GT1a. Thin-layer chromatography with immunostaining showed that anti-GQ1b mAb bound to the C. jejuni LOS (50% of the 20 FS-related strains) more commonly than in the Guillain-Barré syndrome (GBS)-related (7% of 70) or enteritis-related (20% of 65) strains. Anti-GM1 and anti-GD1a mAbs also reacted with the LOS from some FS-related strains (both 20%), but binding frequencies were higher in the GBS-related strains (74 and 57%). The GQ1b epitope was detected in 4 (40%) of the 10 FS-related H. influenzae strains but was absent in strains from patients with GBS (n = 4) and uncomplicated respiratory infections (n = 10).
Conclusions:
C. jejuni and H. influenzae are related to Fisher syndrome (FS) development, and production of anti-GQ1b autoantibody is mediated by the GQ1b-mimicking lipo-oligosaccharides on those bacteria. The causative agents remain unclear in the majority of patients with FS.
Insights
Campylobacter jejuni and Haemophilus influenzae infections are linked to Fisher syndrome (FS) development. These bacteria produce GQ1b-mimicking lipo-oligosaccharides that trigger the production of anti-GQ1b autoantibodies in FS patients.
Area of Science:
- Neuroimmunology
- Microbiology
- Autoimmunity
Background:
- Fisher syndrome (FS) is a rare neurological disorder characterized by ophthalmoplegia, ataxia, and areflexia.
- The precise mechanism of anti-GQ1b autoantibody production in FS remains incompletely understood.
- Investigating antecedent infections and microbial antigens is crucial for elucidating FS pathogenesis.
Purpose of the Study:
- To determine the role of specific antecedent infections in the production of anti-GQ1b autoantibodies in Fisher syndrome.
- To identify microbial components that mimic the GQ1b epitope, potentially triggering autoimmune responses in FS.
Main Methods:
- A prospective case-control serologic study involving 73 FS patients and 73 controls.
- Serological testing for antecedent infections (Campylobacter jejuni, cytomegalovirus, Epstein-Barr virus, Mycoplasma pneumoniae, Haemophilus influenzae).
- Mass spectrometry and thin-layer chromatography with immunostaining to analyze bacterial lipo-oligosaccharides (LOS) and their reactivity with anti-GQ1b antibodies.
Main Results:
- Significantly higher rates of C. jejuni and H. influenzae infections were observed in FS patients compared to controls.
- Anti-GQ1b IgG antibodies were detected in most FS patients with C. jejuni or H. influenzae infections.
- A C. jejuni strain exhibited a GT1a-like lipo-oligosaccharide (LOS) that induced anti-GQ1b and anti-GT1a monoclonal antibodies in mice. This LOS mimicked the GQ1b epitope in 50% of FS-related C. jejuni strains.
Conclusions:
- Campylobacter jejuni and Haemophilus influenzae are implicated in the development of Fisher syndrome.
- The production of anti-GQ1b autoantibodies in FS is mediated by GQ1b-mimicking lipo-oligosaccharides found on these bacteria.
- The specific causative agents remain unidentified in a majority of Fisher syndrome cases.
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