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Hepatocyte Circadian Clocks Control Cholesterol Metabolism and Protect From Metabolic Dysfunction–Associated Steatohepatitis

Leonardo V.M. de Assis, Lina Jegodzinski, Julica Inderhees, Sylvia J. Wowro, Juliana Marques Affonso, Isabel Heyde, Emelie Luise Fischer, Witigo von Schönfels, Andrea Schenk, Florian Roßner, Michael Schupp, Jens U. Marquardt, Münevver Demir, Henrik Oster*

*Korrespondierende/r Autor/-in für diese Arbeit

Abstract

Background & Aims The circadian clock synchronizes physiological processes with the 24-hour light–dark cycle. Clock disruption contributes to metabolic disorders, including metabolic dysfunction–associated steatohepatitis. Methods We investigated the role of the hepatocyte clock in metabolic dysfunction–associated steatohepatitis using hepatocyte-specific Bmal1 deletion (Hep-Bmal1KO) mice. Results Hep-Bmal1KO mice showed faster metabolic dysfunction–associated steatohepatitis progression with increased hepatic cholesterol, inflammation, and fibrosis. Transcriptomic and lipidomic analyses revealed dysregulated cholesterol metabolism in Hep-Bmal1KO mice, marked by reduced expression and disrupted rhythmicity of key cholesterol-related genes. Bioinformatic analyses identified Chrebp as a potential coregulator of these transcriptional changes. In an in vitro model with palmitate exposure and gene silencing, we found that Bmal1 , but not Chrebp , regulated cholesterol accumulation, indicating Bmal1’s specific role in hepatic cholesterol metabolism. Translating our findings to a human patient cohort revealed a significantly shifted circadian phase, despite no marked effect on hepatic cholesterol levels in the livers of patients with more advanced liver disease (ie, metabolic dysfunction–associated steatohepatitis) compared with simple steatosis. Conclusions Taken altogether, our findings offer a roadmap to understand the hepatocyte clock’s role in metabolic dysfunction–associated steatohepatitis and its potential as a therapeutic target.

OriginalspracheEnglisch
Aufsatznummer101806
ZeitschriftCMGH
Jahrgang20
Ausgabenummer8
DOIs
PublikationsstatusVeröffentlicht - 2026

Fördermittel

Funding This study was supported by grants of the German Research Foundation (DFG) to Henrik Oster: 353-10/1, INST 392/167-1 FUGG, and CRC/TR 296 “LOCOTACT” (ID 424957847, TP13) TRR 418: Foundations of Circadian Medicine (ID 541063275, B03 and C05), and to Sylvia J. Wowro and Michael Schupp (ID 502067018). The Metabolomics Workbench is supported by Metabolomics Workbench/National Metabolomics Data Repository (NMDR) (grant# U2C-DK119886), Common Fund Data Ecosystem (CFDE) (grant# 3OT2OD030544), and Metabolomics Consortium Coordinating Center (M3C) (grant# 1U2C-DK119889). Metabolomics Workbench is also supported by National Institutes of Health grants U2C-DK119886 and OT2-OD030544. Leonardo V.M. de Assis received a basic science research grant from the European Thyroid Association (ETA 2023) and support from the Knut and Alice Wallenberg Foundation as a Wallenberg Molecular Medicine Fellow and from the German Research Foundation (DFG) under grant TRR 418 (ID 541063275, B04).

TrägerTrägernummer
National Metabolomics Data Repository (NMDR)
Knut och Alice Wallenbergs Stiftelse
Metabolomics Workbench
European Thyroid AssociationETA 2023
National Institutes of HealthOT2-OD030544, U2C-DK119886
Deutsche ForschungsgemeinschaftCRC/TR 296 “LOCOTACT” (ID 424957847, TP13), TRR 418 (ID 541063275, B04), 353-10/1, ID 502067018, TRR 418: Foundations of Circadian Medicine (ID 541063275, B03 and C05), INST 392/167-1 FUGG
Metabolomics Consortium Coordinating Center (M3C)1U2C-DK119889
Common Fund Data Ecosystem (CFDE)3OT2OD030544

    UN SDGs

    Dieser Output leistet einen Beitrag zu folgendem(n) Ziel(en) für nachhaltige Entwicklung

    1. SDG 3 – Gesundheit und Wohlergehen
      SDG 3 – Gesundheit und Wohlergehen

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