β-Indole-3-acetic acid attenuated collagen-induced arthritis through reducing the ubiquitination of Foxp3 via the AhR-TAZ-Tip60 pathway

IF 3.3 4区 医学 Q3 IMMUNOLOGY
Xiaoran Su, Xinliu Wang, Xin Zhang, Yajie Sun, Yugai Jia
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Abstract

Massive evidence shows that intestinal tryptophan metabolites affected by intestinal flora can modulate the progression of rheumatoid arthritis (RA). However, the effects and mechanisms of intestinal tryptophan metabolites on RA are not yet detailed. Herein, we investigated the protective effects of intestinal tryptophan metabolites on RA and its detailed mechanisms. In this study, the collagen-induced arthritis (CIA) rat model was established. Based on metabolomics analysis, the contents of β-indole-3-acetic acid (IAA), indolylpropionic acid, and indole-3-β-acrylic acid in the sera of CIA rats were significantly less compared with those of the normal rats. Under the condition of Treg or Th17 cell differentiation, IAA significantly promoted the differentiation and activation of Treg cells instead of Th17 cells. Intestinal tryptophan metabolites are well-known endogenic ligands of aryl hydrocarbon receptor (AhR). Not surprisingly, IAA increased the level of Foxp3 through activating the AhR pathway. Interestingly, IAA had little impact on the level of Foxp3 mRNA, but reducing the ubiquitination and degradation of Foxp3. Mechanically, IAA reduced the expression of the transcriptional coactivator TAZ, which was almost completely reversed by either AhR antagonist CH223191 or siRNA. In vitro, IAA decreased the combination of TAZ and the histone acetyltransferase Tip60, while it increased the combination of Tip60 and Foxp3. In CIA rats, oral administration of IAA increased the number of Treg cells and relieved the inflammation. A combined use with CH223191 almost abolished the effect of IAA. Taken together, IAA attenuated CIA by promoting the differentiation of Treg cells through reducing the ubiquitination of Foxp3 via the AhR-TAZ-Tip60 pathway.

Abstract Image

β-吲哚-3-乙酸通过AhR-TAZ-Tip60途径减少Foxp3的泛素化,从而减轻胶原蛋白诱导的关节炎
大量证据表明,受肠道菌群影响的肠道色氨酸代谢物可调节类风湿性关节炎(RA)的病情发展。然而,肠道色氨酸代谢物对类风湿关节炎的影响和机制尚不详细。在此,我们研究了肠道色氨酸代谢物对 RA 的保护作用及其详细机制。本研究建立了胶原诱导的关节炎(CIA)大鼠模型。根据代谢组学分析,CIA大鼠血清中β-吲哚-3-乙酸(IAA)、吲哚丙酸和吲哚-3-β-丙烯酸的含量明显低于正常大鼠。在Treg或Th17细胞分化的条件下,IAA能明显促进Treg细胞而非Th17细胞的分化和活化。肠道色氨酸代谢物是众所周知的芳基烃受体(AhR)内源性配体。毫不奇怪,IAA 通过激活 AhR 途径提高了 Foxp3 的水平。有趣的是,IAA对Foxp3 mRNA的水平几乎没有影响,但却减少了Foxp3的泛素化和降解。从机制上讲,IAA降低了转录辅激活因子TAZ的表达,而AhR拮抗剂CH223191或siRNA几乎可以完全逆转这种情况。在体外,IAA减少了TAZ与组蛋白乙酰转移酶Tip60的结合,而增加了Tip60与Foxp3的结合。在 CIA 大鼠中,口服 IAA 可增加 Treg 细胞的数量并缓解炎症。与CH223191联合使用几乎取消了IAA的作用。综上所述,IAA通过AhR-TAZ-Tip60途径减少Foxp3的泛素化,促进Treg细胞的分化,从而减轻了CIA。
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来源期刊
Immunologic Research
Immunologic Research 医学-免疫学
CiteScore
6.90
自引率
0.00%
发文量
83
审稿时长
6-12 weeks
期刊介绍: IMMUNOLOGIC RESEARCH represents a unique medium for the presentation, interpretation, and clarification of complex scientific data. Information is presented in the form of interpretive synthesis reviews, original research articles, symposia, editorials, and theoretical essays. The scope of coverage extends to cellular immunology, immunogenetics, molecular and structural immunology, immunoregulation and autoimmunity, immunopathology, tumor immunology, host defense and microbial immunity, including viral immunology, immunohematology, mucosal immunity, complement, transplantation immunology, clinical immunology, neuroimmunology, immunoendocrinology, immunotoxicology, translational immunology, and history of immunology.
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