4.8 Article

Endoplasmic reticulum-mitochondria miscommunication is an early and causal trigger of hepatic insulin resistance and steatosis

期刊

JOURNAL OF HEPATOLOGY
卷 77, 期 3, 页码 710-722

出版社

ELSEVIER
DOI: 10.1016/j.jhep.2022.03.017

关键词

hepatic insulin resistance; hepatic steatosis; mitochondria-associated membranes; calcium signaling; mitochondria oxidative metabolism; lipid oxidation

资金

  1. Fondation de France [00056853]
  2. European Association for the Study of Diabetes (EFSD)
  3. Association Franaise pour l'Etude du Foie (AFEF)
  4. INSERM (France)
  5. French National Research Agency (ANR) [ANR-18-CE14-0019-02, ANR-19-CE14-0044-01, ANR-21-CE14-0015-03, ANR-11-LABX-0028-01]
  6. UCAJEDI Investments in the Future project [ANR-15-IDEX-01]
  7. French Ministry of Higher Education and Research
  8. Agence Nationale de la Recherche (ANR) [ANR-21-CE14-0015, ANR-19-CE14-0044] Funding Source: Agence Nationale de la Recherche (ANR)

向作者/读者索取更多资源

The study reveals that ER-mitochondria miscommunication is an early trigger of hepatic insulin resistance and steatosis in obese mice, which can be improved by switching to a healthy diet. Manipulating organelle communication in the liver can impact hepatic metabolic functions.
Background & Aims: Hepatic insulin resistance in obesity and type 2 diabetes was recently associated with endoplasmic re-ticulum (ER)-mitochondria miscommunication. These contact sites (mitochondria-associated membranes: MAMs) are highly dynamic and involved in many functions; however, whether MAM dysfunction plays a causal role in hepatic insulin resistance and steatosis is not clear. Thus, we aimed to determine whether and how organelle miscommunication plays a role in the onset and progression of hepatic metabolic impairment.Methods: We analyzed hepatic ER-mitochondria interactions and calcium exchange in a time-dependent and reversible manner in mice with diet-induced obesity. Additionally, we used recombinant adenovirus to express a specific organelle spacer or linker in mouse livers, to determine the causal impact of MAM dysfunction on hepatic metabolic alterations.Results: Disruption of ER-mitochondria interactions and calcium exchange is an early event preceding hepatic insulin resistance and steatosis in mice with diet-induced obesity. Interestingly, an 8-week reversal diet concomitantly reversed hepatic organelle miscommunication and insulin resistance in obese mice. Mech-anistically, disrupting structural and functional ER-mitochondria interactions through the hepatic overexpression of the organelle spacer FATE1 was sufficient to impair hepatic insulin action and glucose homeostasis. In addition, FATE1-mediated organelle miscommunication disrupted lipid-related mitochondrial oxidative metabolism and induced hepatic steatosis. Conversely, reinforcement of ER-mitochondria interactions through hepatic expression of a synthetic linker prevented diet-induced glucose intolerance after 4 weeks' overnutrition. Importantly, ER -mitochondria miscommunication was confirmed in the liver of obese patients with type 2 diabetes, and correlated with glyce-mia, HbA1c and HOMA-IR index.Conclusions: ER-mitochondria miscommunication is an early causal trigger of hepatic insulin resistance and steatosis, and can be reversed by switching to a healthy diet. Thus, targeting MAMs could help to restore metabolic homeostasis.Lay summary: The literature suggests that interactions between the endoplasmic reticulum and mitochondria could play a role in hepatic insulin resistance and steatosis during chronic obesity. In the present study, we reappraised the time-dependent regulation of hepatic endoplasmic reticulum-mitochondria interactions and calcium exchange, investigating reversibility and causality, in mice with diet-induced obesity. We also assessed the relevance of our findings to humans. We show that organelle miscommunication is an early causal trigger of hepatic insulin resistance and steatosis that can be improved by nutritional strategies.(c) 2022 The Authors. Published by Elsevier B.V. on behalf of European Association for the Study of the Liver. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/ licenses/by-nc-nd/4.0/).

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