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Resetting microbiota by Lactobacillus reuteri inhibits T reg deficiency–induced autoimmunity via adenosine A2A receptors

Authors :
He, Baokun
Hoang, Thomas K.
Wang, Ting
Ferris, Michael
Taylor, Christopher M.
Tian, Xiangjun
Luo, Meng
Tran, Dat Q.
Zhou, Jain
Tatevian, Nina
Luo, Fayong
Molina, Jose G.
Blackburn, Michael R.
Gomez, Thomas H.
Roos, Stefan
Rhoads, J. Marc
Liu, Yuying
Source :
The Journal of Experimental Medicine; January 2017, Vol. 214 Issue: 1 p107-123, 17p
Publication Year :
2017

Abstract

Regulatory T (T reg) cell deficiency causes lethal, CD4+ T cell–driven autoimmune diseases. Stem cell transplantation is used to treat these diseases, but this procedure is limited by the availability of a suitable donor. The intestinal microbiota drives host immune homeostasis by regulating the differentiation and expansion of T reg, Th1, and Th2 cells. It is currently unclear if T reg cell deficiency–mediated autoimmune disorders can be treated by targeting the enteric microbiota. Here, we demonstrate that Foxp3+ T reg cell deficiency results in gut microbial dysbiosis and autoimmunity over the lifespan of scurfy (SF) mouse. Remodeling microbiota with Lactobacillus reuteri prolonged survival and reduced multiorgan inflammation in SF mice. L. reuteri changed the metabolomic profile disrupted by T reg cell deficiency, and a major effect was to restore levels of the purine metabolite inosine. Feeding inosine itself prolonged life and inhibited multiorgan inflammation by reducing Th1/Th2 cells and their associated cytokines. Mechanistically, the inhibition of inosine on the differentiation of Th1 and Th2 cells in vitro depended on adenosine A2A receptors, which were also required for the efficacy of inosine and of L. reuteri in vivo. These results reveal that the microbiota–inosine–A2A receptor axis might represent a potential avenue for combatting autoimmune diseases mediated by T reg cell dysfunction.

Details

Language :
English
ISSN :
00221007 and 15409538
Volume :
214
Issue :
1
Database :
Supplemental Index
Journal :
The Journal of Experimental Medicine
Publication Type :
Periodical
Accession number :
ejs40966898
Full Text :
https://doi.org/10.1084/jem.20160961