Neonatal maternal separation stress elicits lasting DNA methylation changes in the hippocampus of stress‐reactive Wistar Kyoto rats
Стресс, вызванный неонатальной сепарацией от матери, вызывает устойчивые изменения метилирования ДНК в гиппокампе стресс-реактивных крыс линии Wistar Kyoto
2016-09-19
SCID: 54.1/ascus5ne
Discuss with AI
DNA methylationWistar Kyoto ratshippocampusinsulin signaling pathwaysmaternal separation stress
Figures from the paper
Abstract (AI)
Early-life stress (ELS) can alter neurodevelopment in variable ways, ranging from producing deleterious outcomes to stress resilience. While most ELS studies focus on its harmful effects, recent work by our laboratory and others shows that ELS elicits positive effects in certain individuals. We exposed Wistar Kyoto (WKY) rats, known for a stress reactive, anxiety/depression-like phenotype, to maternal separation (MS), a model of ELS. MS exposure elicited anxiolytic and antidepressant behavioral effects as well as improved cardiovascular function in adult WKY offspring. This study interrogates an epigenetic mechanism (DNA methylation) that may confer the adaptive effects of MS in WKY offspring. We quantified global genome methylation levels in limbic brain regions of adult WKYs exposed to daily 180-min MS or neonatal handling from postnatal day 1-14. MS exposure triggered dramatic DNA hypermethylation specifically in the hippocampus. Next-generation sequencing methylome profiling revealed reduced methylation at intragenic sites within two key nodes of insulin signaling pathways: the insulin receptor and one of its major downstream targets, mitogen-activated protein kinase kinase kinase 5 (Map3k5). We then tested the hypothesis that enhancing DNA methylation in WKY rats would elicit adaptive changes akin to the effects of MS. Dietary methyl donor supplementation improved WKY rats' anxiety/depression-like behaviors and also improved cardiovascular measures, similar to previous observations following MS. Overall, these data suggest a potential molecular mechanism that mediates a predicted adaptive response, whereby ELS induces DNA methylation changes in the brain that may contribute to successful stress coping and adaptive physiological changes in adulthood.
Key Findings
1
Dietary methyl donor supplementation improved anxiety/depression-like behaviors and cardiovascular measures, paralleling maternal-separation effects.
2
Maternal separation caused dramatic global DNA hypermethylation specifically in the adult hippocampus, but not broadly across examined limbic regions.
3
Maternal separation from postnatal days 1–14 produced lasting anxiolytic, antidepressant, and cardiovascular benefits in adult stress-reactive Wistar Kyoto rats.
4
Methylome profiling identified reduced intragenic methylation in the insulin receptor and Map3k5, key nodes of insulin signaling pathways.
5
The findings support brain DNA methylation changes as a potential mechanism linking early-life stress with adaptive adult stress coping and physiology.
Research Object
The hippocampus and related adaptive phenotypes of adult stress-reactive Wistar Kyoto rats exposed to neonatal maternal separation
Research Subject
Long-lasting DNA methylation changes, particularly hippocampal hypermethylation and altered methylation of insulin-signaling genes, and their contribution to behavioral and cardiovascular adaptation
Publication Details
Publication Date
2016-09-19
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest