ODC1 restricts meningeal B cell age-associated-like phenotype and function in multiple sclerosis: A human and experimental study
Abstract
Meningeal inflammation, as a clinical feature of multiple sclerosis (MS), is associated with worse clinical disease outcomes. In both relapsing and secondary progressive MS and the experimental autoimmune encephalomyelitis (EAE) MS model, the meninges have been found to contain ectopic lymphoid follicles enriched with B cells. The metabolic requirement of meningeal B cell function in MS or EAE is not well elucidated. Using 7-Tesla MRI brain scans of MS patients and leptomeningeal enhancement as a marker, we found a correlation between meningeal inflammation and metabolites of the arginine/polyamine pathway, a finding recapitulated in EAE. Ornithine Decarboxylase (ODC1), the rate limiting enzyme for polyamine biosynthesis, as well as polyamine metabolism was diminished in the dura meningeal B cells from mice with MOG 35-55 induced EAE mice as compared to naïve controls. Pharmacological inhibition of ODC1 restricted meningeal T cells but promoted meningeal B cell proliferation. B cell–specific deletion of ODC1 resulted in expansion of B cells with age-associated B cell–like phenotype (CD11c + CD21/35 − CD23 − IgD − ), an increase in MOG-specific IgG in the brain, reduction of hippocampal synaptic density, and exacerbated disease in the MOG 1-125 EAE model. Together, these findings demonstrate a divergent role of polyamines in regulating B and T cell responses in the meninges during autoimmunity.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (19)
Jonathan Zurawski
Brigham and Women’s Hospital, Mass General Brigham, Harvard Medical School
Alara Tuncer
Biological Sciences Platform, Sunnybrook Research Institute
Martin R. Profant
Biological Sciences Platform, Sunnybrook Research Institute
Jianuo Wang
Biological Sciences Platform, Sunnybrook Research Institute
Miranda Green
Biological Sciences Platform, Sunnybrook Research Institute
Yoobhin Park
Biological Sciences Platform, Sunnybrook Research Institute
Ke Cao
Institute of Analytical Chemistry and Instrument for Life Science, The Key Laboratory of Biomedical Information Engineering of Ministry of Education, School of Life Science and Technology
Simon Paris
Biological Sciences Platform, Sunnybrook Research Institute
Shahamat Tauhid
Brigham and Women’s Hospital, Mass General Brigham, Harvard Medical School
Youmna Jalkh
Brigham and Women’s Hospital, Mass General Brigham, Harvard Medical School
Molly Quattrucci
Brigham and Women’s Hospital, Mass General Brigham, Harvard Medical School
Renxin Chu
Brigham and Women’s Hospital, Mass General Brigham, Harvard Medical School
Xingshan Cao
Evaluative Clinical Sciences, Sunnybrook Research Institute
Alex Kiss
Evaluative Clinical Sciences, Sunnybrook Research Institute
Tanuja Chitnis
Brigham and Women’s Hospital, Mass General Brigham, Harvard Medical School
Howard Weiner
Brigham and Women’s Hospital, Mass General Brigham, Harvard Medical School
Clary B. Clish
Broad Institute of Massachusetts Institute of Technology and Harvard
Rohit Bakshi
Brigham and Women’s Hospital, Mass General Brigham, Harvard Medical School
Chao Wang