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Integrative systems analysis identifies genetic and dietary modulators of bile acid homeostasis

  • Hao Li
  • , Alessia Perino
  • , Qingyao Huang
  • , Giacomo V.G. Von Alvensleben
  • , Amir Banaei-Esfahani
  • , Laura A. Velazquez-Villegas
  • , Karim Gariani
  • , Melanie Korbelius
  • , Maroun Bou Sleiman
  • , Jéromine Imbach
  • , Yu Sun
  • , Xiaoxu Li
  • , Alexis Bachmann
  • , Ludger J.E. Goeminne
  • , Hector Gallart-Ayala
  • , Evan G. Williams
  • , Julijana Ivanisevic
  • , Johan Auwerx
  • , Kristina Schoonjans
  • Swiss Federal Institute of Technology Lausanne
  • University of Lausanne
  • Swiss Federal Institute of Technology Zurich

科研成果: 期刊稿件文章同行评审

24 引用 (Scopus)

摘要

Bile acids (BAs) are complex and incompletely understood enterohepatic-derived hormones that control whole-body metabolism. Here, we profiled postprandial BAs in the liver, feces, and plasma of 360 chow- or high-fat-diet-fed BXD male mice and demonstrated that both genetics and diet strongly influence BA abundance, composition, and correlation with metabolic traits. Through an integrated systems approach, we mapped hundreds of quantitative trait loci that modulate BAs and identified both known and unknown regulators of BA homeostasis. In particular, we discovered carboxylesterase 1c (Ces1c) as a genetic determinant of plasma tauroursodeoxycholic acid (TUDCA), a BA species with established disease-preventing actions. The association between Ces1c and plasma TUDCA was validated using data from independent mouse cohorts and a Ces1c knockout mouse model. Collectively, our data are a unique resource to dissect the physiological importance of BAs as determinants of metabolic traits, as underscored by the identification of CES1C as a master regulator of plasma TUDCA levels.

源语言英语
页(从-至)1594-1610.e4
期刊Cell Metabolism
34
10
DOI
出版状态已出版 - 4 10月 2022
已对外发布

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