4.8 Article

Hepatic Rab24 controls blood glucose homeostasis via improving mitochondrial plasticity

期刊

NATURE METABOLISM
卷 1, 期 10, 页码 1009-+

出版社

NATURE RESEARCH
DOI: 10.1038/s42255-019-0124-x

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资金

  1. DFG [ZE1037/1-1, ZE1037/3-1, SFB TRR 152/2, SFB 1321/1]
  2. DZD grant [920.561-82DZD0032G]
  3. EFSD grant [01KU1501C]
  4. BMBF grant [031L0114A]
  5. AMPro funding from the Helmholtz Association [ZT-0026]
  6. DFG within the framework of the Munich Cluster for Systems Neurology (EXC2145 SyNergy)
  7. Collaborative Research Center [CRC1177]
  8. DFG Schwerpunktprogramm 1629 ThyroidTransAct [TS 226/3-1]

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Non-alcoholic fatty liver disease (NAFLD) represents a key feature of obesity-related type 2 diabetes with increasing prevalence worldwide. To our knowledge, no treatment options are available to date, paving the way for more severe liver damage, including cirrhosis and hepatocellular carcinoma. Here, we show an unexpected function for an intracellular trafficking regulator, the small Rab GTPase Rab24, in mitochondrial fission and activation, which has an immediate impact on hepatic and systemic energy homeostasis. RAB24 is highly upregulated in the livers of obese patients with NAFLD and positively correlates with increased body fat in humans. Liver-selective inhibition of Rab24 increases autophagic flux and mitochondrial connectivity, leading to a strong improvement in hepatic steatosis and a reduction in serum glucose and cholesterol levels in obese mice. Our study highlights a potential therapeutic application of trafficking regulators, such as RAB24, for NAFLD and establishes a conceptual functional connection between intracellular transport and systemic metabolic dysfunction.

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