Skip to search boxSkip to navigationSkip to main content

Critical Roles of Embryonic Born Dorsal Dentate Granule Neurons for Activity-Dependent Increases in BDNF, Adult Hippocampal Neurogenesis, and Antianxiety-like Behaviors

  • Dong Sun
    ,
  • Leena Milibari
    ,
  • Jin Xiu Pan
    ,
  • Xiao Ren
    ,
  • Ling Ling Yao
    ,
  • Yang Zhao
*Corresponding author for this work
Scholary Output:
Contribution to journal
Article
Peer-review

Open access

Abstract

Background: Dentate gyrus (DG), a “gate” that controls information flow into the hippocampus, plays important roles in regulating both cognitive (e.g., spatial learning and memory) and mood behaviors. Deficits in DG neurons contribute to the pathogenesis of not only neurological, but also psychiatric, disorders, such as anxiety disorder. Whereas DG's function in spatial learning and memory has been extensively investigated, its role in regulating anxiety remains elusive. Methods: Using c-Fos to mark DG neuron activation, we identified a group of embryonic born dorsal DG (dDG) neurons, which were activated by anxiogenic stimuli and specifically express osteocalcin (Ocn)-Cre. We further investigated their functions in regulating anxiety and the underlying mechanisms by using a combination of chemogenetic, electrophysiological, and RNA-sequencing methods. Results: The Ocn-Cre+ dDG neurons were highly active in response to anxiogenic environment but had lower excitability and fewer presynaptic inputs than those of Ocn-Cre− or adult born dDG neurons. Activating Ocn-Cre+ dDG neurons suppressed anxiety-like behaviors and increased adult DG neurogenesis, whereas ablating or chronically inhibiting Ocn-Cre+ dDG neurons exacerbated anxiety-like behaviors, impaired adult DG neurogenesis, and abolished activity (e.g., voluntary wheel running)-induced anxiolytic effect and adult DG neurogenesis. RNA-sequencing screening for factors induced by activation of Ocn-Cre+ dDG neurons identified BDNF, which was required for Ocn-Cre+ dDG neurons mediated antianxiety-like behaviors and adult DG neurogenesis. Conclusions: These results demonstrate critical functions of Ocn-Cre+ dDG neurons in suppressing anxiety-like behaviors but promoting adult DG neurogenesis, and both functions are likely through activation of BDNF.

Publication Information

Output type

Scholary Output:
Contribution to journal
Article
Peer-review

Original language

English (US)

Pages from-to (Number of pages)

Pages 600-614 (15 pages)

Journal (Volume, Issue Number)

Biological Psychiatry (Volume 89, Issue 6)

Publication milestones

  • Published - 03/15/2021

Publication status

Published - 03/15/2021

ISSN

0006-3223

Publication IDs

  • Scopus: 85096107029
  • PubMed: 33183762

Publication metrics

Metrics

SciVal
FWCI
5.41
SciVal
Author count
13
SciVal
Paper percentile
97
SciVal
Top percentile
5
SciVal
citations
3
Fractional count
2
Fractional count
0.15
Fractional count
11
Fractional count
0.85
Fractional count
2
Fractional count
1
Scopus
citations

PlumX, opens in new tab

Captures
46
Citation count
50

Funding Details

This study was supported by the National Institutes of Health Grant Nos. AG045781 and AG051773 (to W-CX) and NS082007 , NS090083 , AG051510 , and MH083317 (to LMe). This study was supported by the National Institutes of Health Grant Nos. AG045781 and AG051773 (to W-CX) and NS082007, NS090083, AG051510, and MH083317 (to LMe). DS and W-CX designed the project and wrote the manuscript. DS performed behavioral tests, virus injection, immunostaining, Western blot, and data analysis. LMi performed data quantification and mouse genotyping. J-XP and F-LT made initial discovery of Ocn-Cre expression in DG. CS and W-BC did electrophysiological recordings. DL produced rabies viruses. XR, YZ, and L-LY performed RNA-sequencing analysis and RNA scope. YZ and J-SZ assisted with breeding Ocn-Cre mice. LMe and W-CX helped data analysis and interpretation. W-CX supervised the project. We thank Dr. Ben W. Strowbridge (Department of Neurosciences, Case Western Reserve University) and members in W-CX's and LMe's laboratories for helpful discussions and suggestions. The authors report no biomedical financial interests or potential conflicts of interest.
FundersFunding numbers
Neurosciences Department
-
NIH
AG045781, NS082007, NS090083, AG051773, AG051510
NIMH
R01MH083317
CWRU
-