4.7 Article

Proteomics and metabolic phenotyping define principal roles for the aryl hydrocarbon receptor in mouse liver

期刊

ACTA PHARMACEUTICA SINICA B
卷 11, 期 12, 页码 3806-3819

出版社

INST MATERIA MEDICA, CHINESE ACAD MEDICAL SCIENCES
DOI: 10.1016/j.apsb.2021.10.014

关键词

AHR; Endocrine disruption; Environmental liver disease; Nonalcoholic fatty liver disease; Perilipin-2; Pheromones; PCB126

资金

  1. National Institute of Environmental Health Sciences (USA) [R35ES028373, R01ES032189, T32ES011564, P42ES023716, P30ES030283, F31ES028982, R21ES031510]
  2. National Institute of General Medical Sciences (USA) [P20GM113226]
  3. National Institute on Alcohol Abuse and Alcoholism (USA) [P50AA024337, 1F32AA027950]
  4. Kentucky Council on Postsecondary Education (USA) [PON2 415 1900002934]
  5. Wendell Cherry Endowed Chair

向作者/读者索取更多资源

The AHR gene plays a crucial role in metabolism and endocrine response in the liver. It affects liver metabolism through lipid and organic acid pathways, as well as impacting endocrine function and response. Further research is needed to fully understand the biological roles of AHR and its ligands in liver metabolic health and disease.
Dioxin-like molecules have been associated with endocrine disruption and liver disease. To better understand aryl hydrocarbon receptor (AHR) biology, metabolic phenotyping and liver proteomics were performed in mice following ligand-activation or whole-body genetic ablation of this receptor. Male wild type (WT) and Ahr(-/-) mice (Taconic) were fed a control diet and exposed to 3,3',4,4',5-pentachlorobiphenyl (PCB126) (61 nmol/kg by gavage) or vehicle for two weeks. PCB126 increased expression of canonical AHR targets (Cyp1a1 and Cyp1a2) in WT but not Ahr(-/-). Knockouts had increased adiposity with decreased glucose tolerance; smaller livers with increased steatosis and perilipin-2; and paradoxically decreased blood lipids. PCB126 was associated with increased hepatic triglycerides in Ahr(-/-). The liver proteome was impacted more so by Ahr(-/-) genotype than ligand-activation, but top gene ontology (GO) processes were similar. The PCB126-associated liver proteome was Ahr-dependent. Ahr principally regulated liver metabolism (e.g., lipids, xenobiotics, organic acids) and bioenergetics, but it also impacted liver endocrine response (e.g., the insulin receptor) and function, including the production of steroids, hepatokines, and pheromone binding proteins. These effects could have been indirectly mediated by interacting transcription factors or microRNAs. The biologic roles of the AHR and its ligands warrant more research in liver metabolic health and disease. (C) 2021 Chinese Pharmaceutical Association and Institute of Materia Medica, Chinese Academy of Medical Sciences. Production and hosting by Elsevier B.V.

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