A microbially produced AhR ligand promotes a Tph1-driven tolerogenic program in multiple sclerosis

微生物产生的 AhR 配体促进多发性硬化症中 Tph1 驱动的耐受性程序

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作者:Teresa Zelante, Giuseppe Paolicelli, Francesca Fallarino, Marco Gargaro, Gianluca Vascelli, Marco De Zuani, Jan Fric, Petra Laznickova, Marcela Hortova Kohoutkova, Antonio Macchiarulo, Daniela Dolciami, Giuseppe Pieraccini, Lorenzo Gaetani, Giulia Scalisi, Caterina Trevisan, Barbara Frossi, Carlo Pu

Abstract

Multiple sclerosis is a debilitating autoimmune disease, characterized by chronic inflammation of the central nervous system. While the significance of the gut microbiome on multiple sclerosis pathogenesis is established, the underlining mechanisms are unknown. We found that serum levels of the microbial postbiotic tryptophan metabolite indole-3-carboxaldehyde (3-IAld) inversely correlated with disease duration in multiple sclerosis patients. Much like the host-derived tryptophan derivative L-Kynurenine, 3-IAld would bind and activate the Aryl hydrocarbon Receptor (AhR), which, in turn, controls endogenous tryptophan catabolic pathways. As a result, in peripheral lymph nodes, microbial 3-IAld, affected mast-cell tryptophan metabolism, forcing mast cells to produce serotonin via Tph1. We thus propose a protective role for AhR-mast-cell activation driven by the microbiome, whereby natural metabolites or postbiotics will have a physiological role in immune homeostasis and may act as therapeutic targets in autoimmune diseases.

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