Neuroligin-3 in Dopamine Neurons Promotes Behavioral and Neurobiological Adaptations to Chronic Morphine Exposure
Brandner, D. D.; Retzlaff, C. L.; Stieve, B. J.; Mermelstein, P. G.; Rothwell, P. E.
Show abstract
Chronic opioid exposure causes structural and functional changes in brain circuits, which may contribute to opioid use disorders. Synaptic cell-adhesion molecules are prime candidates for mediating this opioid-evoked plasticity. Neuroligin-3 (NL3) is an X-linked postsynaptic adhesion protein that shapes synaptic function at multiple sites in the mesolimbic dopamine system. We therefore studied how genetic knockout of NL3 alters responses to chronic morphine in male mice. Constitutive NL3 knockout caused a persistent reduction in psychomotor sensitization after chronic morphine exposure and changed in the topography of locomotor stimulation produced by morphine. This latter change was recapitulated by conditional genetic deletion of NL3 from cells expressing the Drd1 dopamine receptor, whereas reduced psychomotor sensitization was recapitulated by conditional genetic deletion from dopamine neurons. Without NL3 expression, dopamine neurons in the ventral tegmental area exhibited diminished activation following chronic morphine exposure, by measuring in vivo calcium signals with fiber photometry. This altered pattern of dopamine neuron activity may be driven by aberrant forms of opioid-evoked synaptic plasticity in the absence of NL3: dopamine neurons lacking NL3 showed weaker synaptic inhibition at baseline, which was subsequently strengthened after chronic morphine. In total, our study highlights neurobiological adaptations in dopamine neurons of the ventral tegmental area that correspond with increased behavioral sensitivity to opioids, and further suggests that NL3 expression by dopamine neurons provides a molecular substrate for opioid-evoked adaptations in brain function and behavior.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Effect of selective lesions of nucleus accumbens μ-opioid receptor-expressing cells on heroin self-administration in male and female rats: a study with novel Oprm1-Cre knock-in rats 97%
- Differential Patterns of Synaptic Plasticity in the Nucleus Accumbens Caused by Continuous and Interrupted Morphine Exposure 97%
- The mesolimbic dopamine signatures of relapse to alcohol-seeking 96%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Mice lacking the endocannabinoid-synthesizing enzyme NAPE-PLD exhibit sex-dependent dysregulations in responsiveness to oxycodone and a natural reward 95%
- Relapse-like behavior and nAChR sensitization following intermittent access nicotine self-administration 95%
- VTA MC3R neurons control feeding in an activity and sex-dependent manner in mice 95%
Similar papers in this journal
- Sex differences in behavioral and brainstem transcriptomic neuroadaptations following neonatal opioid exposure in outbred mice 95%
- Accumbens cholinergic interneurons mediate cue-induced nicotine seeking and associated glutamatergic plasticity 95%
- Ventral pallidal GABAergic neurons drive consumption in male, but not female rats 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.