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volume 58 pages 102913

Microbiota-derived butyrate limits the autoimmune response by promoting the differentiation of follicular regulatory T cells

Daisuke Takahashi 1
Naomi Hoshina 1
Yuma Kabumoto 1
Yuichi Maeda 2
Akari Suzuki 3
Hiyori Tanabe 1
Junya Isobe 1
Takahiro Yamada 1
Kisara Muroi 1
YUTO YANAGISAWA 1
Atsuo Nakamura 1
Yumiko Fujimura 1
Aiko Saeki 1
Mizuki Ueda 4
Ryohtaroh Matsumoto 1
Hanako Asaoka 1
Julie M. Clarke 5
Yohsuke Harada 6
Eiji Umemoto 7
Noriko Komatsu 8
Takaharu Okada 9
Hiroshi Takayanagi 7
Kiyoshi Takeda 6
Michio Tomura 4
Koji Hase 1, 10
Publication typeJournal Article
Publication date2020-08-01
scimago Q1
wos Q1
SJR3.591
CiteScore17.1
Impact factor10.8
ISSN23523964
General Biochemistry, Genetics and Molecular Biology
General Medicine
Abstract
Background Rheumatoid arthritis (RA) is a chronic debilitating autoimmune disorder with a high prevalence, especially in industrialized countries. Dysbiosis of the intestinal microbiota has been observed in RA patients. For instance, new-onset untreated RA (NORA) is associated with the underrepresentation of the Clostridium cluster XIVa, including Lachnospiraceae, which are major butyrate producers, although the pathological relevance has remained obscure. Follicular regulatory T (TFR) cells play critical regulatory roles in the pathogenesis of autoimmune diseases, including RA. Reduced number of circulating TFR cells has been associated with the elevation of autoantibodies and disease severity in RA. However, the contribution of commensal microbe-derived butyrate in controlling TFR cell differentiation remains unknown. Methods We examined the contribution of microbe-derived butyrate in controlling autoimmune arthritis using collagen-induced arthritis (CIA) and SKG arthritis models. We phenotyped autoimmune responses in the gut-associated lymphoid tissues (GALT) in the colon and joint-draining lymph nodes in the CIA model. We developed an in vitro CXCR5+Bcl-6+Foxp3+ TFR (iTFR) cell culture system and examined whether butyrate promotes the differentiation of iTFR cells. Findings Microbe-derived butyrate suppressed the development of autoimmune arthritis. The immunization of type II collagen (CII) caused hypertrophy of the GALT in the colon by amplifying the GC reaction prior to the onset of the CIA. Butyrate mitigated these pathological events by promoting TFR cell differentiation. Butyrate directly induced the differentiation of functional TFR cells in vitro by enhancing histone acetylation in TFR cell marker genes. This effect was attributed to histone deacetylase (HDAC) inhibition by butyrate, leading to histone hyperacetylation in the promoter region of the TFR-cell marker genes. The adoptive transfer of the butyrate-treated iTFR cells reduced CII-specific autoantibody production and thus ameliorated the symptoms of arthritis. Interpretation Accordingly, microbiota-derived butyrate serves as an environmental cue to enhance TFR cells, which suppress autoantibody production in the systemic lymphoid tissue, eventually ameliorating RA. Our findings provide mechanistic insights into the link between the gut environment and RA risk. Funding This work was supported by AMED-Crest (16gm1010004h0101, 17gm1010004h0102, 18gm1010004h0103, and 19gm1010004s0104 to KH), the Japan Society for the Promotion of Science (JP17KT0055, JP16H01369, and JP18H04680 to KH; JP17K15734 to DT), Keio University Special Grant-in-Aid for Innovative Collaborative Research Projects (KH), Keio Gijuku Fukuzawa Memorial Fund for the Advancement of Education and Research (DT), the SECOM Science and Technology Foundation (KH), the Cell Science Research Foundation (KH), the Mochida Memorial Foundation for Medical and Pharmaceutical Research (DT), the Suzuken Memorial Foundation (KH and DT), the Takeda Science Foundation (KH and DT), The Science Research Promotion Fund, and The Promotion and Mutual Aid Corporation for Private Schools of Japan (KH).
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Takahashi D. et al. Microbiota-derived butyrate limits the autoimmune response by promoting the differentiation of follicular regulatory T cells // EBioMedicine. 2020. Vol. 58. p. 102913.
GOST all authors (up to 50) Copy
Takahashi D., Hoshina N., Kabumoto Y., Maeda Y., Suzuki A., Tanabe H., Isobe J., Yamada T., Muroi K., YANAGISAWA Y., Nakamura A., Fujimura Y., Saeki A., Ueda M., Matsumoto R., Asaoka H., Clarke J. M., Harada Y., Umemoto E., Komatsu N., Okada T., Takayanagi H., Takeda K., Tomura M., Hase K. Microbiota-derived butyrate limits the autoimmune response by promoting the differentiation of follicular regulatory T cells // EBioMedicine. 2020. Vol. 58. p. 102913.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1016/j.ebiom.2020.102913
UR - https://doi.org/10.1016/j.ebiom.2020.102913
TI - Microbiota-derived butyrate limits the autoimmune response by promoting the differentiation of follicular regulatory T cells
T2 - EBioMedicine
AU - Takahashi, Daisuke
AU - Hoshina, Naomi
AU - Kabumoto, Yuma
AU - Maeda, Yuichi
AU - Suzuki, Akari
AU - Tanabe, Hiyori
AU - Isobe, Junya
AU - Yamada, Takahiro
AU - Muroi, Kisara
AU - YANAGISAWA, YUTO
AU - Nakamura, Atsuo
AU - Fujimura, Yumiko
AU - Saeki, Aiko
AU - Ueda, Mizuki
AU - Matsumoto, Ryohtaroh
AU - Asaoka, Hanako
AU - Clarke, Julie M.
AU - Harada, Yohsuke
AU - Umemoto, Eiji
AU - Komatsu, Noriko
AU - Okada, Takaharu
AU - Takayanagi, Hiroshi
AU - Takeda, Kiyoshi
AU - Tomura, Michio
AU - Hase, Koji
PY - 2020
DA - 2020/08/01
PB - Elsevier
SP - 102913
VL - 58
PMID - 32711255
SN - 2352-3964
ER -
BibTex
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BibTex (up to 50 authors) Copy
@article{2020_Takahashi,
author = {Daisuke Takahashi and Naomi Hoshina and Yuma Kabumoto and Yuichi Maeda and Akari Suzuki and Hiyori Tanabe and Junya Isobe and Takahiro Yamada and Kisara Muroi and YUTO YANAGISAWA and Atsuo Nakamura and Yumiko Fujimura and Aiko Saeki and Mizuki Ueda and Ryohtaroh Matsumoto and Hanako Asaoka and Julie M. Clarke and Yohsuke Harada and Eiji Umemoto and Noriko Komatsu and Takaharu Okada and Hiroshi Takayanagi and Kiyoshi Takeda and Michio Tomura and Koji Hase},
title = {Microbiota-derived butyrate limits the autoimmune response by promoting the differentiation of follicular regulatory T cells},
journal = {EBioMedicine},
year = {2020},
volume = {58},
publisher = {Elsevier},
month = {aug},
url = {https://doi.org/10.1016/j.ebiom.2020.102913},
pages = {102913},
doi = {10.1016/j.ebiom.2020.102913}
}