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Published on: July 12, 2024
Altered hypothalamic DNA methylation and stress-induced hyperactivity following early life stress
Eamon Fitzgerald1,2, Matthew C Sinton3, Sara Wernig-Zorc4
1University/British Heart Foundation Centre for Cardiovascular Science, University of Edinburgh, The Queens Medical Research Institute, 47 Little France Crescent, Edinburgh, EH16 4TJ, UK. eamon.fitzgerald@mcgill.ca.
Insights
Early life stress in neonatal mice alters hypothalamic DNA methylation and leads to stress-specific hyperactivity in adulthood. This highlights the neonatal period as critical for mental health programming and epigenetic modifications.
Area of Science:
- Neuroscience
- Epigenetics
- Developmental Psychology
Background:
- Early life stress (ELS) increases psychiatric disorder risk.
- Neonatal stress effects on brain development are less understood.
- The hypothalamus epigenome is implicated in ELS effects.
Purpose of the Study:
- Investigate neonatal stress impact on hypothalamic epigenetics and behavior in mice.
- Hypothesize modified maternal separation (MMS) alters hypothalamic transcriptome, methylome, and adult behavior.
Main Methods:
- Used a mouse model of modified maternal separation (MMS) from postnatal days 4-6.
- Analyzed hypothalamic tissue at P6 using 3'mRNA and DNA methylation immunoprecipitation sequencing.
- Assessed adult behavior (3-4 months) using elevated plus maze, open field, and in-cage monitoring.
Main Results:
- MMS caused subtle gene expression changes but widespread DNA methylation alterations.
- Differentially methylated regions were enriched for synapse-associated genes.
- MMS induced hyperactivity in maze tests, but not habitual hyperactivity.
Conclusions:
- Neonatal stress significantly impacts hypothalamic DNA methylation.
- These epigenetic changes are linked to stress-specific behavioral alterations in adulthood.
- Findings inform understanding of ELS-mediated neurodevelopmental impacts.
Abstract:
Exposure to early life stress (ELS) during childhood or prenatally increases the risk of future psychiatric disorders. The effect of stress exposure during the neonatal period is less well understood. In preterm infants, exposure to invasive procedures is associated with altered brain development and future stress responses suggesting that the neonatal period could be a key time for the programming of mental health. Previous studies suggest that ELS affects the hypothalamic epigenome, making it a good candidate to mediate these effects. In this study, we used a mouse model of early life stress (modified maternal separation; MMS). We hypothesised MMS would affect the hypothalamic transcriptome and DNA methylome, and impact on adult behaviour. MMS involved repeated stimulation of pups for 1.5 h/day, whilst separated from their mother, from postnatal day (P) 4-6. 3'mRNA sequencing and DNA methylation immunoprecipitation (meDIP) sequencing were performed on hypothalamic tissue at P6. Behaviour was assessed with the elevated plus, open field mazes and in-cage monitoring at 3-4 months of age. MMS was only associated with subtle changes in gene expression, but there were widespread alterations in DNA methylation. Notably, differentially methylated regions were enriched for synapse-associated loci. MMS resulted in hyperactivity in the elevated plus and open field mazes, but in-cage monitoring revealed that this was not representative of habitual hyperactivity. ELS has marked effects on DNA methylation in the hypothalamus in early life and results in stress-specific hyperactivity in young adulthood. These results have implications for the understanding of ELS-mediated effects on brain development.
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