S-53
Cognition, Behavior, and Memory
Nicotine-induced conditioned place preference involves dynamic changes in DNA methylation and hydroxymethylation in the zebrafish brain
Joaquin Ortiz1,2, Leandro Rocco1,2, Ramón Bernabeu1,2, Paula Faillace1,2
1. Universidad de Buenos Aires (UBA).
2. IFIBIO-Houssay (UBA and CONICET).
Presenting Author:
joaquinortiz22.jo@gmail.com
DNA modifications are fundamental for synaptic remodelling in memory-related processes. Cytosine methylation and demethylation marks regulate gene expression and play key roles in addiction-like behaviours. DNA methyltransferases (DNMTs) catalyse methylation of DNA-cytosines (5mC), while TETs enzymes catalyse DNA demethylation to 5-hydroxymethylcytosine (5hmC) and further oxidations. 5hmC is stable and abundant in neurons and regulates gene expression. We examined whether conditioned place preference (CPP) to nicotine regulates 5mC and 5hmC levels in the zebrafish brain. Levels of TET1 mRNA were upregulated while levels of TET2, GADD45, DNMT, and MeCP2 mRNAs were downregulated in the zebrafish brain trained in the nicotine-CPP task. Specific nuclei of the reward circuit showed increases in the 5hmC mark in neuronal subpopulations induced by nicotine-CPP. Other reward structures, showed decreased numbers of cell nuclei containing high levels of 5mC with no changes in the number of cell nuclei showing high levels of 5hmC. Nicotine-CPP increased 5hmC levels and decreased 5mC levels in the whole brain of zebrafish. Here, we demonstrate that the establishment of nicotine-CPP in the zebrafish brain is associated with changes in DNA methylation marks in neurons of the reward circuit, including the upregulation and downregulation of the 5mC mark, along with a net increase in the 5hmC mark. The specific changes in the methylation mark profile depend on the reward structure examined.