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Depletion of angiotensin-converting enzyme 2 reduces brain serotonin and impairs the running-induced neurogenic response

  • Friederike Klempin
  • , Valentina Mosienko
  • , Susann Matthes
  • , Daniel C Villela
  • , Mihail Todiras
  • , Josef M Penninger
  • , Michael Bader
  • , Robson A S Santos
  • , Natalia Alenina

Research output: Contribution to journalArticle (Academic Journal)peer-review

69 Citations (Scopus)

Abstract

Physical exercise induces cell proliferation in the adult hippocampus in rodents. Serotonin (5-HT) and angiotensin (Ang) II are important mediators of the pro-mitotic effect of physical activity. Here, we examine precursor cells in the adult brain of mice lacking angiotensin-converting enzyme (ACE) 2, and explore the effect of an acute running stimulus on neurogenesis. ACE2 metabolizes Ang II to Ang-(1-7) and is essential for the intestinal uptake of tryptophan (Trp), the 5-HT precursor. In ACE2-deficient mice, we observed a decrease in brain 5-HT levels and no increase in the number of BrdU-positive cells following exercise. Targeting the Ang II/AT1 axis by blocking the receptor, or experimentally increasing Trp/5-HT levels in the brain of ACE2-deficient mice, did not rescue the running-induced effect. Furthermore, mice lacking the Ang-(1-7) receptor, Mas, presented a normal neurogenic response to exercise. Our results identify ACE2 as a novel factor required for exercise-dependent modulation of adult neurogenesis and essential for 5-HT metabolism.

Original languageEnglish
Pages (from-to)3625-3634
Number of pages10
JournalCellular and Molecular Life Sciences
Volume75
Issue number19
DOIs
Publication statusPublished - Oct 2018

Keywords

  • Adult Stem Cells/physiology
  • Angiotensin-Converting Enzyme 2
  • Animals
  • Brain/metabolism
  • Cell Differentiation/genetics
  • Cell Proliferation/genetics
  • Down-Regulation/genetics
  • Female
  • Gene Deletion
  • Metabolic Networks and Pathways/genetics
  • Mice
  • Mice, Inbred C57BL
  • Mice, Knockout
  • Neural Stem Cells/physiology
  • Neurogenesis/genetics
  • Peptidyl-Dipeptidase A/genetics
  • Physical Conditioning, Animal/physiology
  • Running/physiology
  • Serotonin/metabolism

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