Egr2 induction in Drd1+ ensembles of the ventrolateral striatum supports the development of cocaine reward
Mukherjee, D.; Gonzales, B. J.; Ashwal-Fluss, R.; Turm, H.; Groysman, M.; Citri, A.
Show abstract
Drug addiction develops due to brain-wide plasticity within neuronal ensembles, mediated by dynamic gene expression. Though the most common approach to identify such ensembles relies on immediate early gene expression, little is known of how the activity of these genes is linked to modified behavior observed following repeated drug exposure. To address this gap, we present a broad-to-specific approach, beginning with a comprehensive investigation of brain-wide cocaine-driven gene expression, through the description of dynamic spatial patterns of gene induction in subregions of the striatum, and finally address functionality of region-specific gene induction in the development of cocaine preference. Our findings reveal differential cell-type specific dynamic transcriptional recruitment patterns within two subdomains of the dorsal striatum following repeated cocaine exposure. Furthermore, we demonstrate that induction of the IEG Egr2 in the ventrolateral striatum, as well as the cells within which it is expressed, are required for the development of cocaine seeking. Impact statementVLS ensembles are dynamically recruited by cocaine experiences to mediate cocaine reward.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Regulation of dopamine-dependent transcription and cocaine action by Gadd45b 96%
- Dorsal Raphe to Basolateral Amygdala Corticotropin-Releasing Factor Circuit Regulates Cocaine-Memory Reconsolidation 96%
- Optogenetic inhibition of the dorsal hippocampus CA3 region during early-stage cocaine-memory reconsolidation disrupts subsequent context-induced cocaine seeking in rats 96%
Similar papers in this journal
- Dynamic dichotomy of accumbal population activity underlies cocaine sensitization 97%
- Epac2 in midbrain dopamine neurons contributes to cocaine reinforcement via facilitation of dopamine release 97%
- Mechanism for differential recruitment of orbitostriatal transmission during outcomes and actions in alcohol dependence 96%
Similar papers in this journal
- The role of genetically distinct central amygdala neurons in appetitive and aversive responding assayed with a novel dual valence operant conditioning paradigm. 94%
- Identification Of Novel Bdnf-Specific Corticostriatal Circuitries 94%
- Retrograde labeling illuminates distinct topographical organization of D1 and D2 receptor-positive neurons in the prefrontal cortex of mice 94%
Similar papers in this journal
- Histone deacetylase 5 in prelimbic prefrontal cortex limits context-associated cocaine seeking 97%
- Plasticity of the glutamate transporter EAAT2 on striatal astrocytes regulates flexibility inbehavior 96%
- Cell-type-specific whole-genome landscape of ΔFOSB binding in nucleus accumbens after chronic cocaine exposure 95%
Similar papers in this journal
- The mesolimbic dopamine signatures of relapse to alcohol-seeking 96%
- Prior cocaine exposure increases firing to immediate reward while attenuating cue and context signals related to reward value in anterior insula 96%
- Somatostatin neurons of the bed nucleus of stria terminalis enhance associative fear memory consolidation in mice 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.