Social anxiety disorder is characterized by a persistent fear and avoidance of social situations, but available treatment options are rather unspecific. Using an established mouse social fear conditioning (SFC) paradigm, we profiled gene expression and chromatin alterations after the acquisition and extinction of social fear within the septum, a brain region important for social fear and social behaviors. Here, we particularly focused on the successful versus unsuccessful outcome of social fear extinction training, which corresponds to treatment responsive versus resistant patients in the clinics. Validation of coding and non-coding RNAs revealed specific isoforms of the long non-coding RNA (lncRNA) Meg3 regulated, depending on the success of social fear extinction. Moreover, PI3K/AKT was differentially activated with extinction success in SFC-mice. In vivo knockdown of specific Meg3 isoforms increased baseline activity of PI3K/AKT signaling, and mildly delayed social fear extinction. Using ATAC-Seq and CUT&RUN, we found alterations in the chromatin structure of specific genes, which might be direct targets of lncRNA Meg3.
Transcriptome and chromatin alterations in social fear indicate association of MEG3 with successful extinction of fear
M. Royer,Balagopal Pai,R. Menon,A. Bludau,Katharina Gryksa,R. B. Perry,I. Ulitsky,G. Meister,Inga D. Neumann
Published 2022 in Molecular Psychiatry
ABSTRACT
PUBLICATION RECORD
- Publication year
2022
- Venue
Molecular Psychiatry
- Publication date
2022-03-25
- Fields of study
Biology, Medicine
- Identifiers
- External record
- Source metadata
Semantic Scholar, PubMed
CITATION MAP
EXTRACTION MAP
CLAIMS
- No claims are published for this paper.
CONCEPTS
- No concepts are published for this paper.
REFERENCES
Showing 1-100 of 100 references · Page 1 of 1
CITED BY
Showing 1-12 of 12 citing papers · Page 1 of 1