Learning induced epigenetic modifications in the ventral striatum are necessary for long-term memory.

Behav Brain Res

Dipartimento di Biologia e Biotecnologie, Sapienza Università di Roma, Roma, Italia; Centro di Ricerca in Neurobiologia "D. Bovet", Sapienza Università di Roma, Roma, Italia; Istituto Biologia Cellulare e Neurobiologia, CNR, Roma, Italia. Electronic address:

Published: May 2014


Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

Epigenetic modifications such as histone acetylation in cortical or allocortical regions have been shown to be necessary for the formation of long-term memories. Here we investigated whether similar changes were occurring also in the ventral striatum and whether they are necessary for the consolidation of aversive memory. To this purpose we performed immediate post-training focal administrations of the histone deacetylase inhibitor suberoylanilide hydroxamic acid (SAHA, 5, 10 or 15 μg/side) or the DNA methyltransferase (DNMT) inhibitor, 5-aza-2'-deoxycytidine (5-AZA, 0.0625 or 0.125 μg/side) in the ventral striatum of mice trained in one-trial inhibitory avoidance task. Intra-ventral striatal SAHA administrations, immediately after training, improved memory retention. Opposite effects were found with 5-AZA. We also found that training in the one-trial inhibitory avoidance is accompanied by increased acetylation of specific residues that can be further increased by intra-VS SAHA administrations. Intra-VS 5-AZA administrations on the other hand reduced training-induced histones acetylation at the same residues. These findings imply the occurrence of histone acetylation in the ventral striatum in order to store aversive memory. Moreover, they suggest that the effects induced by the DNMT inhibitor 5-AZA may at least partially due to blockade of H3 and H4 acetylation. These results suggest that the contemporary activation of similar molecular mechanisms might be needed in different brain regions to enable the formation of long-term memories.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.bbr.2014.02.006DOI Listing

Publication Analysis

Top Keywords

ventral striatum
16
epigenetic modifications
8
histone acetylation
8
formation long-term
8
long-term memories
8
aversive memory
8
dnmt inhibitor
8
one-trial inhibitory
8
inhibitory avoidance
8
saha administrations
8

Similar Publications

Dysregulated dopaminergic signaling has been implicated in the pathophysiology of major depressive disorder (MDD) and childhood sexual abuse (CSA), but inconsistencies abound. In a multimodal PET-functional MRI study, harnessing the highly selective tracer [C]altropane, we investigated dopamine transporter availability (DAT) and resting-state functional connectivity (rsFC) within reward-related regions among 112 unmedicated individuals (MDD: n = 37, MDD/CSA: n = 18; CSA no MDD: n = 14; controls: n = 43). Striatal DAT and seed-based rsFC were assessed in the dorsal and ventral striatum and the ventral tegmental area.

View Article and Find Full Text PDF

Decision-making often involves evaluating trade-offs between potential rewards and aversive outcomes, engaging both motivational drive and affective judgment. The ventral striatum (VS) and ventral pallidum (VP) are key regions in these processes. While the VS is associated with reward processing and incentive motivation, the VP encodes hedonic value and mediates motivated behaviors.

View Article and Find Full Text PDF

Psychotic-like experiences (PLEs) -subclinical experiences or symptoms that resemble psychosis, such as hallucinations and delusional thoughts-often emerge during adolescence and are predictive of serious psychopathology. Understanding PLEs during adolescence is crucial due to co-occurring developmental changes in neural reward systems that heighten the risk for psychotic-related and affective psychopathology, especially in those with a family history of severe mental illness (SMI). We examined associations among PLEs, clinical symptoms, and neural reward function during this critical developmental period.

View Article and Find Full Text PDF

Objective: Major depressive disorder is a significant cause of disability, impacting an estimated 193 million individuals worldwide. Forty percent are estimated to have little to no response to standard pharmacological therapies. Deep brain stimulation (DBS) has emerged as a favorable neuromodulation therapy for treatment-resistant depression, but it remains unclear which brain targets are optimal.

View Article and Find Full Text PDF

Clinical apathy might result from either a diminished willingness to exert effort for known rewards or from reduced motivation to explore potentially beneficial future opportunities. To identify the underlying cognitive and neural bases of apathy, we used task-based fMRI to examine motivated choice computations in patients with chronic traumatic brain injury (TBI)-a condition frequently associated with apathy-and compared their behavior and neural activity to that of healthy controls (CTRLs). Participants performed two choice tasks involving distinct types of motivational tradeoffs: i) An effort-value tradeoff task (the 'Apples Task') requiring them to decide how much physical effort they were willing to exert for varying reward magnitudes, and ii) An explore-exploit tradeoff task (the 'Novelty-Bandit Task') requiring them to choose between exploiting options with a known history of reward or exploring novel options with uncertain but potentially higher future value.

View Article and Find Full Text PDF