tRNA epitranscriptomic alterations associated with opioid-induced reward-seeking and long-term opioid withdrawal
Blaze, J.; Browne, C. J.; Futamura, R.; Zachariou, V.; Nestler, E. J.; Akbarian, S.
Show abstract
DNA cytosine methylation has been documented as a potential epigenetic mechanism of transcriptional regulation underling opioid use disorder. However, methylation of RNA cytosine residues, which would drive another level of biological influence as an epitranscriptomic mechanism of gene and protein regulation has not been studied. Here, we probed whether chronic morphine exposure could alter tRNA cytosine methylation (m5C) and resulting expression levels in the medial prefrontal cortex (mPFC), a brain region crucial for reward processing and executive function that exhibits opioid-induced molecular restructuring. We identified dynamic changes in glycine tRNA (tRNAGlyGCC) cytosine methylation, corresponding to altered expression levels of this tRNA at multiple timepoints following 15 days of daily morphine. Strikingly, a robust increase in methylation, coupled with decreased expression, was present after 30 days of withdrawal, suggesting that repeated opioid administration produces changes to the tRNA regulome long after discontinuation. Furthermore, forebrain-wide knockout of neuronal Nsun2, a tRNA methyltransferase, was associated with disruption of reward-seeking in the conditioned place preference paradigm, and this effect was recapitulated by regional mPFC Nsun2 knockout. Taken together, these studies provide a foundational link between the regulation of tRNA cytosine methylation and OUD and highlight the tRNA machinery as a potential therapeutic target in addiction.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Psilocybin reduces heroin seeking behavior and modulates inflammatory gene expression in the nucleus accumbens and prefrontal cortex of male rats 96%
- Transcriptome profiling of the ventral pallidum reveals a role for pallido-thalamic neurons in cocaine reward 95%
- Sex-specific GABAergic microcircuits that switch vulnerability into resilience to stress and reverse the effects of chronic stress exposure 95%
Similar papers in this journal
- Histone deacetylase 5 in prelimbic prefrontal cortex limits context-associated cocaine seeking 96%
- Cell-type-specific whole-genome landscape of ΔFOSB binding in nucleus accumbens after chronic cocaine exposure 95%
- Multi-omic network analysis identifies dysregulated neurobiological pathways in opioid addiction 94%
Similar papers in this journal
- Transcriptional signatures of fentanyl use in the mouse ventral tegmental area 96%
- Chemogenetic Inhibition of Corticostriatal Circuits Reduces Cued Reinstatement of Methamphetamine Seeking 96%
- Cell-type specific expression and behavioral impact of galanin and GalR1 in the locus coeruleus during opioid withdrawal 95%
Similar papers in this journal
- Dissociable dorsal medial prefrontal cortex ensembles are necessary for cocaine seeking and fear conditioning in mice 94%
- Estrogen signaling in the dorsal raphe regulates binge-like drinking in mice 93%
- Synaptic Zn2+ potentiates the effects of cocaine on striatal dopamine neurotransmission and behavior 92%
"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.