4.8 Article

Mitofusin 2 in POMC Neurons Connects ER Stress with Leptin Resistance and Energy Imbalance

期刊

CELL
卷 155, 期 1, 页码 172-187

出版社

CELL PRESS
DOI: 10.1016/j.cell.2013.09.003

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资金

  1. RecerCaixa Grant [2010ACUP_ 00275]
  2. EFSD/Lilly Fellowship Award
  3. Ministerio de Ciencia e Innovacion (MICINN), Instituto de Salud Carlos III (ISCIII) Grant [PI10/01074]
  4. MICINN Grant [SAF2010-19527, BFU2011-24679]
  5. Ministerio de Economia y Competitividad (MINECO) Grant [BFU2012-35255]
  6. Xunta de Galicia Grant [EM2012/039, 2012-CP069]
  7. CIBERobn
  8. European Community's Seventh Framework Programme Grant [ERC-2011-StGOBESITY53- 281408]
  9. MINECO Grant [SAF2008-03803]
  10. Generalitat de Catalunya Grant [2009SGR915]
  11. CIBERDEM
  12. INTERREG IVB- SUDOE-FEDER (DIOMED) [SOE1/P1/E178]
  13. European Commission
  14. MITIN Grant [HEALTH-F4-2008223450]
  15. ISCIII Grant [PI10/00290]
  16. NIH [DP1DK006850, R01AG040236, P01NS062686]
  17. American Diabetes Association, Helmholtz society (ICEMED)
  18. Conselho Nacional de Desenvolvimento Cientifico e Tecnologico, Brazil [401476/2012-0]
  19. University of Barcelona

向作者/读者索取更多资源

Mitofusin 2 (MFN2) plays critical roles in both mitochondrial fusion and the establishment of mitochondria- endoplasmic reticulum (ER) interactions. Hypothalamic ER stress has emerged as a causative factor for the development of leptin resistance, but the underlying mechanisms are largely unknown. Here, we show that mitochondria-ER contacts in anorexigenic pro-opiomelanocortin (POMC) neurons in the hypothalamus are decreased in diet-induced obesity. POMC-specific ablation of Mfn2 resulted in loss of mitochondria-ER contacts, defective POMC processing, ER stress-induced leptin resistance, hyperphagia, reduced energy expenditure, and obesity. Pharmacological relieve of hypothalamic ER stress reversed these metabolic alterations. Our data establish MFN2 in POMC neurons as an essential regulator of systemic energy balance by fine-tuning the mitochondrial-ER axis homeostasis and function. This previously unrecognized role for MFN2 argues for a crucial involvement in mediating ER stress-induced leptin resistance.

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