ROS Dynamics Delineate Functional States of Hippocampal Neural Stem Cells and Link to Their Activity-Dependent Exit from Quiescence
File version
Version of Record (VoR)
Author(s)
Walker, Tara L
Overall, Rupert W
Klatt, Gesa M
Zeidan, Salma A
Zocher, Sara
Kirova, Dilyana G
Ntitsias, Konstantinos
Fischer, Tim J
Sykes, Alex M
Reinhardt, Susanne
Dahl, Andreas
Mansfeld, Joerg
Ruenker, Annette E
Kempermann, Gerd
Griffith University Author(s)
Primary Supervisor
Other Supervisors
Editor(s)
Date
Size
File type(s)
Location
Abstract
Cellular redox states regulate the balance between stem cell maintenance and activation. Increased levels of intracellular reactive oxygen species (ROS) are linked to proliferation and lineage specification. In contrast to this general principle, we here show that in the hippocampus of adult mice, quiescent neural precursor cells (NPCs) maintain the highest ROS levels (hiROS). Classifying NPCs on the basis of cellular ROS content identified distinct functional states. Shifts in ROS content primed cells for a subsequent state transition, with lower ROS content marking proliferative activity and differentiation. Physical activity, a physiological activator of adult hippocampal neurogenesis, recruited hiROS NPCs into proliferation via a transient Nox2-dependent ROS surge. In the absence of Nox2, baseline neurogenesis was unaffected, but the activity-induced increase in proliferation disappeared. These results provide a metabolic classification of NPC functional states and describe a mechanism linking the modulation of cellular ROS by behavioral cues to the activation of adult NPCs.
Journal Title
Cell Stem Cell
Conference Title
Book Title
Edition
Volume
28
Issue
2
Thesis Type
Degree Program
School
Publisher link
Patent number
Funder(s)
Grant identifier(s)
Rights Statement
Rights Statement
© The Author(s) 2020. Published by Elsevier Inc. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
Item Access Status
Note
Access the data
Related item(s)
Subject
Biological sciences
Biomedical and clinical sciences
Science & Technology
Life Sciences & Biomedicine
Cell & Tissue Engineering
Cell Biology
NERVOUS-SYSTEM
Persistent link to this record
Citation
Adusumilli, VS; Walker, TL; Overall, RW; Klatt, GM; Zeidan, SA; Zocher, S; Kirova, DG; Ntitsias, K; Fischer, TJ; Sykes, AM; Reinhardt, S; Dahl, A; Mansfeld, J; Ruenker, AE; Kempermann, G, ROS Dynamics Delineate Functional States of Hippocampal Neural Stem Cells and Link to Their Activity-Dependent Exit from Quiescence, Cell Stem Cell, 2021, 28 (2), pp. 300-314.e6