Bile acid metabolites control TH17 and Treg cell differentiation

被引:0
|
作者
Saiyu Hang
Donggi Paik
Lina Yao
Eunha Kim
Jamma Trinath
Jingping Lu
Soyoung Ha
Brandon N. Nelson
Samantha P. Kelly
Lin Wu
Ye Zheng
Randy S. Longman
Fraydoon Rastinejad
A. Sloan Devlin
Michael R. Krout
Michael A. Fischbach
Dan R. Littman
Jun R. Huh
机构
[1] Blavatnik Institute,Department of Immunology
[2] Harvard Medical School,Department of Biological Chemistry and Molecular Pharmacology
[3] Blavatnik Institute,Department of Biological Sciences
[4] Harvard Medical School,Target Discovery Institute, Nuffield Department of Medicine
[5] Birla Institute of Technology and Science,Department of Chemistry
[6] University of Oxford,The Kimmel Center for Biology and Medicine of the Skirball Institute
[7] Bucknell University,Immunobiology and Microbial Pathogenesis Laboratory
[8] New York University School of Medicine,Department of Bioengineering
[9] The Salk Institute for Biological Studies,undefined
[10] Jill Roberts Center for IBD,undefined
[11] Weill Cornell Medicine,undefined
[12] Stanford University,undefined
[13] Howard Hughes Medical Institute,undefined
[14] Evergrande Center for Immunologic Diseases,undefined
[15] Harvard Medical School and Brigham and Women’s Hospital,undefined
来源
Nature | 2019年 / 576卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Bile acids are abundant in the mammalian gut, where they undergo bacteria-mediated transformation to generate a large pool of bioactive molecules. Although bile acids are known to affect host metabolism, cancer progression and innate immunity, it is unknown whether they affect adaptive immune cells such as T helper cells that express IL-17a (TH17 cells) or regulatory T cells (Treg cells). Here we screen a library of bile acid metabolites and identify two distinct derivatives of lithocholic acid (LCA), 3-oxoLCA and isoalloLCA, as T cell regulators in mice. 3-OxoLCA inhibited the differentiation of TH17 cells by directly binding to the key transcription factor retinoid-related orphan receptor-γt (RORγt) and isoalloLCA increased the differentiation of Treg cells through the production of mitochondrial reactive oxygen species (mitoROS), which led to increased expression of FOXP3. The isoalloLCA-mediated enhancement of Treg cell differentiation required an intronic Foxp3 enhancer, the conserved noncoding sequence (CNS) 3; this represents a mode of action distinct from that of previously identified metabolites that increase Treg cell differentiation, which require CNS1. The administration of 3-oxoLCA and isoalloLCA to mice reduced TH17 cell differentiation and increased Treg cell differentiation, respectively, in the intestinal lamina propria. Our data suggest mechanisms through which bile acid metabolites control host immune responses, by directly modulating the balance of TH17 and Treg cells.
引用
收藏
页码:143 / 148
页数:5
相关论文
共 50 条
  • [21] Oligopeptides of Chorionic Gonadotropin β-Subunit in Induction of T Cell Differentiation into Treg and Th17
    S. A. Zamorina
    S. V. Shirshev
    Bulletin of Experimental Biology and Medicine, 2015, 160 : 72 - 75
  • [22] Casein kinase 2 is a critical determinant of the balance of Th17 and Treg cell differentiation
    Jang, Sung Woong
    Hwang, Soo Seok
    Kim, Hyeong Su
    Lee, Keoung Oh
    Kim, Min Kyung
    Lee, Wonyong
    Kim, Kiwan
    Lee, Gap Ryol
    EXPERIMENTAL AND MOLECULAR MEDICINE, 2017, 49 : e375 - e375
  • [23] Oligopeptides of Chorionic Gonadotropin β-Subunit in Induction of T Cell Differentiation into Treg and Th17
    Zamorina, S. A.
    Shirshev, S. V.
    BULLETIN OF EXPERIMENTAL BIOLOGY AND MEDICINE, 2015, 160 (01) : 72 - 75
  • [24] Environmental control of Th17 differentiation
    Quintana, Francisco J.
    Weiner, Howard L.
    EUROPEAN JOURNAL OF IMMUNOLOGY, 2009, 39 (03) : 655 - 657
  • [25] MicroRNA-155 Modulates Treg and Th17 Cells Differentiation and Th17 Cell Function by Targeting SOCS1
    Yao, Rui
    Ma, Yu-Lan
    Liang, Wei
    Li, Huan-Huan
    Ma, Zhi-Jun
    Yu, Xian
    Liao, Yu-Hua
    PLOS ONE, 2012, 7 (10):
  • [26] Metabolic control of TH17 and induced Treg cell balance by an epigenetic mechanism
    Tao Xu
    Kelly M. Stewart
    Xiaohu Wang
    Kai Liu
    Min Xie
    Jae Kyu Ryu
    Ke Li
    Tianhua Ma
    Haixia Wang
    Lu Ni
    Saiyong Zhu
    Nan Cao
    Dongwei Zhu
    Yu Zhang
    Katerina Akassoglou
    Chen Dong
    Edward M. Driggers
    Sheng Ding
    Nature, 2017, 548 : 228 - 233
  • [27] Metabolic control of TH17 and induced Treg cell balance by an epigenetic mechanism
    Xu, Tao
    Stewart, Kelly M.
    Wang, Xiaohu
    Liu, Kai
    Xie, Min
    Ryu, Jae Kyu
    Li, Ke
    Ma, Tianhua
    Wang, Haixia
    Ni, Lu
    Zhu, Saiyong
    Cao, Nan
    Zhu, Dongwei
    Zhang, Yu
    Akassoglou, Katerina
    Dong, Chen
    Driggers, Edward M.
    Ding, Sheng
    NATURE, 2017, 548 (7666) : 228 - +
  • [28] Th17/Treg cell polarisation in multiple sclerosis
    Edwards, L.
    Constantinescu, C.
    MULTIPLE SCLEROSIS, 2009, 15 (09): : S70 - S70
  • [29] Glutamine metabolism in Th17/Treg cell fate: applications in Th17 cell-associated diseases
    Yang, Guan
    Xia, Yaoyao
    Ren, Wenkai
    SCIENCE CHINA-LIFE SCIENCES, 2021, 64 (02) : 221 - 233
  • [30] Glutamine metabolism in Th17/Treg cell fate: applications in Th17 cell-associated diseases
    Guan Yang
    Yaoyao Xia
    Wenkai Ren
    Science China Life Sciences, 2021, 64 : 221 - 233