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Epigenetic regulation of the BDNF gene: implications for psychiatric disorders
F Boulle1, D L A van den Hove, S B Jakob
1Department of Psychiatry and Neuropsychology, Maastricht University, European Graduate School for Neuroscience (EURON), Maastricht, The Netherlands.
Abstract:
Abnormal brain-derived neurotrophic factor (BDNF) signaling seems to have a central role in the course and development of various neurological and psychiatric disorders. In addition, positive effects of psychotropic drugs are known to activate BDNF-mediated signaling. Although the BDNF gene has been associated with several diseases, molecular mechanisms other than functional genetic variations can impact on the regulation of BDNF gene expression and lead to disturbed BDNF signaling and associated pathology. Thus, epigenetic modifications, representing key mechanisms by which environmental factors induce enduring changes in gene expression, are suspected to participate in the onset of various psychiatric disorders. More specifically, various environmental factors, particularly when occurring during development, have been claimed to produce long-lasting epigenetic changes at the BDNF gene, thereby affecting availability and function of the BDNF protein. Such stabile imprints on the BDNF gene might explain, at least in part, the delayed efficacy of treatments as well as the high degree of relapses observed in psychiatric disorders. Moreover, BDNF gene has a complex structure displaying differential exon regulation and usage, suggesting a subcellular- and brain region-specific distribution. As such, developing drugs that modify epigenetic regulation at specific BDNF exons represents a promising strategy for the treatment of psychiatric disorders. Here, we present an overview of the current literature on epigenetic modifications at the BDNF locus in psychiatric disorders and related animal models.
Insights
Epigenetic changes in the brain-derived neurotrophic factor (BDNF) gene are linked to psychiatric disorders. Modifying these epigenetic marks offers a promising therapeutic strategy for neurological and psychiatric conditions.
Area of Science:
- Neuroscience
- Psychiatry
- Molecular Biology
Background:
- Abnormal brain-derived neurotrophic factor (BDNF) signaling is implicated in neurological and psychiatric disorders.
- Psychotropic drugs can positively influence BDNF-mediated signaling.
- Beyond genetic variations, epigenetic modifications regulate BDNF gene expression, impacting its signaling and associated pathologies.
Purpose of the Study:
- To review the current literature on epigenetic modifications at the BDNF locus in psychiatric disorders.
- To explore the role of environmental factors in inducing epigenetic changes at the BDNF gene.
- To highlight the potential of targeting epigenetic regulation of BDNF for therapeutic interventions.
Main Methods:
- Literature review of studies on epigenetic modifications at the BDNF locus.
- Examination of animal models relevant to psychiatric disorders and BDNF epigenetics.
- Analysis of the impact of environmental factors on BDNF gene expression.
Main Results:
- Environmental factors, especially during development, can cause lasting epigenetic changes to the BDNF gene.
- These epigenetic imprints may contribute to treatment delays and relapse rates in psychiatric disorders.
- The complex structure of the BDNF gene allows for differential exon regulation and region-specific distribution.
Conclusions:
- Epigenetic modifications at the BDNF gene are significantly involved in the pathophysiology of psychiatric disorders.
- Targeting epigenetic regulation of specific BDNF exons presents a promising therapeutic avenue.
- Understanding these mechanisms is crucial for developing effective treatments for psychiatric conditions.
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