4.6 Article

24(S),25-Epoxycholesterol and cholesterol 24S-hydroxylase (CYP46A1) overexpression promote midbrain dopaminergic neurogenesis in vivo

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 294, Issue 11, Pages 4169-4176

Publisher

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.RA118.005639

Keywords

development; lipid metabolism; MS; neurodegenerative disease; neurogenesis; CYP46A1; dopamine neuron; liver X receptor; midbrain; oxysterol

Funding

  1. Swedish Research Council (VR projects: DBRM) [2011-3116, 2011-3318, 2016-01526]
  2. European Union (NeuroStemcellRepair)
  3. European Union (DDPD)
  4. Swedish Foundation for Strategic Research (DBRM)
  5. Swedish Foundation for Strategic Research (SRL program)
  6. Swedish Foundation for Strategic Research [SB16-0065]
  7. Hjarnfonden [FO2015: 0202, FO2017-0059]
  8. Cancerfonden [CAN 2016/572]
  9. Karolinska Institutet (SFO Strat Regen, senior grant 2018)
  10. Ser Cymru II Rising Stars grant from the Welsh Government
  11. Biotechnology and Biological Sciences Research Council [BB/I001735/1, B/N015932/1, BB/L001942/1]
  12. Imperial College Healthcare Charities
  13. Hjarnfonden
  14. Stockholm County Council (ALF)
  15. Stiftelsen for Gamla Tjanarinnor
  16. Vinnova [2016-01526] Funding Source: Vinnova
  17. BBSRC [BB/L001942/1, BB/I001735/1, BB/N015932/1] Funding Source: UKRI
  18. Swedish Research Council [2016-01526] Funding Source: Swedish Research Council
  19. Swedish Foundation for Strategic Research (SSF) [SB16-0065] Funding Source: Swedish Foundation for Strategic Research (SSF)

Ask authors/readers for more resources

The liver X receptors Lxr/NR1H3 and Lxr/NR1H2 are ligand-dependent nuclear receptors critical for midbrain dopaminergic (mDA) neuron development. We found previously that 24(S),25-epoxycholesterol (24,25-EC), the most potent and abundant Lxr ligand in the developing mouse midbrain, promotes mDA neurogenesis in vitro. In this study, we demonstrate that 24,25-EC promotes mDA neurogenesis in an Lxr-dependent manner in the developing mouse midbrain in vivo and also prevents toxicity induced by the Lxr inhibitor geranylgeranyl pyrophosphate. Furthermore, using MS, we show that overexpression of human cholesterol 24S-hydroxylase (CYP46A1) increases the levels of both 24(S)-hydroxycholesterol (24-HC) and 24,25-EC in the developing midbrain, resulting in a specific increase in mDA neurogenesis in vitro and in vivo, but has no effect on oculomotor or red nucleus neurogenesis. 24-HC, unlike 24,25-EC, did not affect in vitro neurogenesis, indicating that the neurogenic effect of 24,25-EC on mDA neurons is specific. Combined, our results indicate that increased levels of 24,25-EC in vivo, by intracerebroventricular delivery in WT mice or by overexpression of its biosynthetic enzyme CYP46A1, specifically promote mDA neurogenesis. We propose that increasing the levels of 24,25-EC in vivo may be a useful strategy to combat the loss of mDA neurons in Parkinson's disease.

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