Bacterial indole-3-lactic acid affects epithelium–macrophage crosstalk to regulate intestinal homeostasis

Author:

Yu Kaiyuan1,Li Qianqian1,Sun Xuan1,Peng Xianping1,Tang Qiang1,Chu Hongyu2,Zhou Lu2,Wang Bangmao2,Zhou Zhemin3,Deng Xueqin1,Yang Jianming1,Lv Junqiang1,Liu Ran1,Miao Chunhui1,Zhao Wei4,Yao Zhi1,Wang Quan1ORCID

Affiliation:

1. Key Laboratory of Immune Microenvironment and Disease (Ministry of Education), Tianjin Institute of Immunology, The Province and Ministry Co-sponsored Collaborative Innovation Center for Medical Epigenetics, Department of Immunology, School of Basic Medical Sciences, Tianjin Medical University, Tianjin 300070, China

2. Department of gastroenterology and hepatology, Tianjin Medical University general hospital, Tianjin Medical University, Tianjin 300070, China

3. Pasteurien College, Suzhou Medical College of Soochow University, Suzhou Key Laboratory of Pathogen Bioscience and Anti-infective Medicine, Suzhou, Jiangsu 215123, China

4. The School and Hospital of Stomatology, Tianjin Medical University, Tianjin 300070, China

Abstract

Tryptophan and its derivatives perform a variety of biological functions; however, the role and specific mechanism of many tryptophan derivatives in intestinal inflammation remain largely unclear. Here, we identified that an Escherichia coli strain ( Ec- TMU) isolated from the feces of tinidazole-treated individuals, and indole-3-lactic acid (ILA) in its supernatant, decreased the susceptibility of mice to dextran sulfate sodium–induced colitis. Ec- TMU and ILA contribute to the relief of colitis by inhibiting the production of epithelial CCL2/7, thereby reducing the accumulation of inflammatory macrophages in vitro and in vivo. Mechanistically, ILA downregulates glycolysis, NF-κB, and HIF signaling pathways via the aryl hydrocarbon receptor, resulting in decreased CCL2/7 production in epithelial cells. Clinical evidence suggests that the fecal ILA level is negatively correlated with the progression indicator of inflammatory bowel diseases. These results demonstrate that ILA has the potential to regulate intestinal homeostasis by modulating epithelium–macrophage interactions.

Funder

MOST | National Natural Science Foundation of China

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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