Journal article
IL-17A deficiency in HLA-DR3 transgenic mice enriches beneficial Prevotella species in gut to promote Tregs and reduce CNS autoimmunity
Microbiome, Vol.14(1), 176
12/2026
DOI: 10.1186/s40168-026-02394-w
PMID: 42374500
Abstract
Human Leukocyte Antigen (HLA) class-II genes, particularly HLA-DR2 and HLA-DR3, and the gut microbiota are intricately linked to the pathobiology of multiple sclerosis (MS) through their ability to regulate host immunity, a critical factor in disease pathogenesis. An imbalance between anti-inflammatory CD4
Tregs and pro-inflammatory IL-17A-secreting CD4
Th17 cells is thought to drive disease. However, a key unresolved question is whether HLA-class II-restricted CD4
IL-17A cells can influence Treg populations and the extent to which gut microbiota regulate this IL-17A-Treg axis. Therefore, we utilized humanized transgenic mice expressing the HLA class-II gene and deficient in mouse class-II molecules, where all CD4
T cells are selected on the human HLA class-II molecule, closely mimicking human immune responses.
Utilizing IL-17A-deficient (DR3.IL-17A
) mice expressing HLA-DR3 (HLA-DRβ1*0301), we show that IL-17A deficiency enriches beneficial gut bacteria, including Prevotella species, enhances peroxisome proliferator-activated receptor (PPAR) signaling, and increases FoxP3
regulatory T (Treg) cells and IL-10 production. The importance of gut microbiota in promoting Tregs and anti-inflammatory responses was confirmed by administering Prevotella copri, a common commensal in human gut, which mirrored the effects observed in IL-17A-deficient mice by inducing PPAR signaling and Treg population. Moreover, DR3.IL-17A
mice exhibited a marked reduction in EAE severity compared to IL-17A-sufficient (DR3) mice, underscoring the enhanced functional capacity of the Treg population in mitigating disease progression. Cohousing experiments validated the role of gut microbiota in immune regulation including Treg induction, as demonstrated by the transfer of Prevotella species from IL-17A-deficient mice to IL-17A-sufficient mice, increased Treg populations and attenuated EAE severity in recipient DR3 mice.
This study redefines IL-17A's role in immune regulation, emphasizing its ability to directly influence gut microbiota composition and the abundance of Treg-promoting bacteria. Thus, gut microbiota-targeted therapies, particularly those promoting Treg-inducing bacteria like Prevotella species, hold promise for treating autoimmune diseases by modulating host immune responses. Video Abstract.
Details
- Title: Subtitle
- IL-17A deficiency in HLA-DR3 transgenic mice enriches beneficial Prevotella species in gut to promote Tregs and reduce CNS autoimmunity
- Creators
- Shailesh K Shahi - University of IowaSudeep Ghimire - University of IowaSamantha N Jensen - University of IowaPeter C Lehman - University of IowaAllison G Rux - University of IowaSouradip Sinha - University of IowaNicholas Borcherding - Washington University in St. LouisMunir R Tanas - University of IowaKatherine N Gibson-Corley - Vanderbilt University Medical CenterSukirth M Ganesan - University of IowaNitin J Karandikar - University of IowaAshutosh K Mangalam - University of Iowa
- Resource Type
- Journal article
- Publication Details
- Microbiome, Vol.14(1), 176
- DOI
- 10.1186/s40168-026-02394-w
- PMID
- 42374500
- NLM abbreviation
- Microbiome
- ISSN
- 2049-2618
- eISSN
- 2049-2618
- Publisher
- Springer Nature
- Grant note
- R01AI137075 / National Institutes of Health/NIAID 1I01CX002212 / Veteran Affairs Merit Award
- Language
- English
- Electronic publication date
- 06/29/2026
- Date published
- 12/2026
- Academic Unit
- Dermatology; Pathology; Iowa Neuroscience Institute; Dental Research; Periodontics
- Record Identifier
- 9985177949302771
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