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Gut microbial interaction networks control autoimmunity to neuroretina

GSE327793 Mus musculus Expression profiling by high throughput sequencing 6 samples Submitted 2026/08/03 Platform GPL24247
Summary
The gut microbiome influences the development of immune-mediated inflammatory diseases. One such condition is autoimmune uveitis, a sight-threatening ocular inflammation driven by retina-specific T cells. Using a model of spontaneous experimental autoimmune uveitis (sEAU) we showed that gut commensals provide immune stimuli that trigger the disease. Here we report that uveitis-promoting microbes are present in human gut flora and that colonization of germ-free (GF) mice with commensal flora from healthy human donors was sufficient to provoke disease. Severity of sEAU correlated with expansion of Akkermansia and contraction of short-chain fatty acid (SCFA)–producing Firmicutes, followed by decreased SCFA levels and a dominant gut Th1 effector response. Mechanistic gain-of-function experiments, enriching GF sEAU mice with Akkermansia, reproduced these microbiome, metabolite and immune phenotype shifts, and exacerbated disease. We propose that Akkermansia promotes autoimmunity by outcompeting SCFA-producers and enhancing Th1-type responses. Notably, an inverse correlation between Akkermansia (Verrucomicrobia) and Firmicutes was also present in fecal microbiome of patients with uveitis, multiple sclerosis and Crohn’s disease. These findings reveal a stereotypic gut microbial interaction network that regulates systemic immune balance, and may represent an ecologically conserved mechanism through which the gut microbiome modulates autoimmune and inflammatory diseases.
Published in
Gut microbial interaction networks control autoimmunity to neuroretina
Zhang A, Horai R, Jittayasothorn Y et al. · Research square 2026 · PMID 42147187 · doi:10.21203/rs.3.rs-9528424/v1
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Also filed as BioProject PRJNA1451962. Searching any of these in the dataset finder brings you back here.

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