mTORC1-TFEB/TFE3 signaling is associated with bile acid diversification during hepatic metabolic adaptation
Alex Zaufel, Wenfei Sun, Nunzia Pastore, Ulrike Taschler, Carina Wagner, Hubert Hackl, Judith Sommer, Dagmar Silbert-Wagner, Jan G. Hengstler, Brigitte Begher-Tibbe, Rudolf Stauber, Dagmar Kolb, Martin Troetzmueller, Benjamin Gottschalk, Chelsea Thorsheim, Eva-Lena Stange, Mathias W. Hornef, Olga Pivovarova-Ramich, Andreas F. H. Pfeiffer, Kylie P. Matchett, Anne Loft, Stephan Herzig, Neil C. Henderson, Andrea Ballabio, Zoltan Arany, Christian Wolfrum, Peter Fickert, Tarek Moustafa
The mechanistic target of rapamycin complex 1 (mTORC1) integrates nutrient and hormonal cues to regulate hepatic lipid metabolism with major implications for metabolic dysfunction-associated steatotic liver disease (MASLD). Here, we show that altered hepatic mTORC1–TFEB/TFE3 signaling is associated with coordinated remodeling of bile acid (BA) metabolism during metabolic adaptation. Our data support a model in which cross-talk between mTORC1 and TFEB/TFE3 is associated with divergent regulation of bile acid synthesis and transformation. Depending on the mTORC1 signaling state, changes in hepatic