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Induction of Paralysis and Visual System Injury in Mice by T Cells Specific for Neuromyelitis Optica Autoantigen Aquaporin-4
Published on: August 21, 2017
Requirements for anti-aquaporin 5 autoantibody production in a mouse model
Sabin Acharya1, Ahreum Lee1, Hyunjin Kim1
1Department of Immunology and Molecular Microbiology, School of Dentistry and Dental Research Institute, Seoul National University, Seoul, Republic of Korea.
Abstract:
Several oral bacteria, including Prevotella melaninogenica (Pm), have aquaporin (AQP) proteins homologous to human AQP5, a major water channel protein targeted in Sjogren's syndrome. This study aimed to understand the antigenic characteristics that induce autoantibodies against an AQP5 "E" epitope (AQP5E) in a mouse model using C57BL/6 mice. Immunization with a PmE-L peptide derived from Pm AQP, which contains amino acid mismatches both at the B- and T-cell epitopes, efficiently induced anti-AQP5E autoantibodies accompanied by increased germinal center (GC) B and follicular helper T cells in the draining lymph nodes. However, PmE, a peptide lacking a T-cell epitope, and AQP5E-L, an AQP5-derived self-peptide, hardly induced either anti-AQP5E autoantibodies or GC responses. Surprisingly, OTII-AQP5E, a peptide that replaced the self T-cell epitope of AQP5E-L with an ovalbumin-derived foreign T-cell epitope, was not any better than AQP5E-L in the induction of anti-AQP5E autoantibodies and GC response, despite the substantial expansion of CD4+ T cells and production of anti-OTII-AQP5E antibodies. The complex of biotinylated PmE-L peptide and highly immunogenic streptavidin (SA) induced a strong extrafollicular B-cell response skewed toward the expansion of SA-specific B cells. However, the expansion of AQP5E-specific GC B cells was limited, resulting in the inefficient induction of anti-AQP5E autoantibodies. Collectively, our results have demonstrated that anti-AQP5E autoantibody production is only allowed when foreign B- and T-cell epitopes drive a strong GC response of AQP5E-specific B cells for affinity maturation. This study helps explain why cross-reactive anti-AQP5 autoantibodies are not produced during the immune response to Pm in most healthy people.
Insights
Foreign B- and T-cell epitopes are crucial for generating autoantibodies against aquaporin-5 (AQP5) by driving germinal center responses. This explains why Prevotella melaninogenica (Pm) typically doesn't trigger these autoantibodies in healthy individuals.
Area of Science:
- Immunology
- Molecular Biology
- Autoimmunity
Background:
- Oral bacteria like Prevotella melaninogenica (Pm) possess aquaporin (AQP) proteins similar to human AQP5.
- Human AQP5 is a key water channel protein implicated in Sjogren's syndrome.
- Understanding the antigenic triggers for autoantibodies against AQP5 is vital for autoimmune disease research.
Purpose of the Study:
- To investigate the antigenic requirements for inducing autoantibodies against the AQP5 "E" epitope (AQP5E).
- To elucidate the role of B-cell and T-cell epitopes in autoantibody production against AQP5.
- To explain the limited cross-reactivity between bacterial AQP and human AQP5 in healthy individuals.
Main Methods:
- Immunization of C57BL/6 mice with various peptides derived from Pm AQP and human AQP5.
- Analysis of germinal center (GC) B cells and follicular helper T cells in draining lymph nodes.
- Flow cytometry to assess T cell expansion and antibody production.
Main Results:
- A Pm-derived peptide (PmE-L) with foreign B- and T-cell epitopes efficiently induced anti-AQP5E autoantibodies and GC responses.
- Peptides lacking T-cell epitopes or containing self T-cell epitopes failed to induce significant autoantibody production.
- Even with foreign T-cell epitopes, self-peptide immunization did not enhance autoantibody induction.
- Streptavidin complexation promoted B-cell responses but limited GC B-cell expansion and autoantibody induction.
Conclusions:
- Anti-AQP5E autoantibody production necessitates foreign B- and T-cell epitopes that stimulate a robust GC response in AQP5-specific B cells.
- This mechanism explains the infrequent generation of cross-reactive anti-AQP5 autoantibodies during immune responses to oral bacteria like Pm.

