Search bioRxiv⌕ Search

Biology subjects

Woolf, M. T.

Publications and source records attributed to Woolf, M. T..

2 recordsLinked to original sources

Cocaine regulation of Nr4a1 chromatin bivalency and mRNA in male and female mice.

BACKGROUNDCocaine epigenetically regulates gene expression via changes in histone post-translational modifications (HPTMs). We previously found that the immediate early gene Nr4a1 is epigenetically activated by cocaine in mouse brain reward regions. HPTMs act combinatorically, yet few studies examine multiple HPTMs at a single gene. Bivalent gene promoters are simultaneously enriched in both activating (H3K4me3 (K4)) and repressive (H3K27me3 (K27)) HPTMs. As such, bivalent genes are lowly expressed but poised for activity-dependent gene regulation. In the current study, we defined regulation of K4&K27 bivalency at Nr4a1 following cocaine treatment in male and female mice. The inclusion of female mice can shed light on the epidemiological relevance of sex to cocaine use disorder. METHODSMale and female mice were injected with saline or cocaine (i.p. 20mg/kg). We applied sequential chromatin immunoprecipitation and qPCR to define Nr4a1 bivalency and expression in striatum (STR), prefrontal cortex (PFC), and hippocampus (HPC). Pearsons correlation matrices quantified relationships within each brain region across treatment conditions for each sex. RESULTSWe defined K4&K27 bivalency at the Nr4a1 promoter in all three brain regions, in both sexes. In female STR, cocaine increased Nr4a1 mRNA, coupled to maintenance of Nr4a1 K4&K27 bivalency. In male STR, cocaine enriched repressive H3K27me3 and K4&K27 bivalency at Nr4a1 and failed to increase Nr4a1 mRNA. Furthermore, cocaine epigenetically regulated a putative NR4A1 target, Cartpt, in male PFC. CONCLUSIONThis study defined the epigenetic regulation of Nr4a1 in reward brain regions in male and female mice. Cocaine treatment in female mice increased Nr4a1 mRNA in STR, but there was no change in Nr4a1 H3K27me3 or K4&K27 promoter bivalency. Following cocaine treatment in male mice, Nr4a1 mRNA did not change in STR, HPC, or PFC, and Nr4a1 H3K27me3 and K4&K27 promoter bivalency increased in the STR.

neuroscience↗

Cell-Type Specific Profiling of Histone Post-Translational Modifications in the Adult Mouse Striatum

Histone post-translational modifications (hPTMs) regulate gene expression via changes in chromatin accessibility and transcription factor recruitment. At a given locus, the coordinated enrichment of several distinct hPTMs regulate gene expression in response to external stimuli. However, neuronal hPTMs have been primarily characterized in bulk brain tissue and/or tissue pooled across subjects. This obscures both cell-type and individual variability, features essential to understand individual susceptibility to psychiatric disease. To address this limitation, we optimized a hybrid protocol, ICuRuS, to profile both activating and repressive hPTMs in neuronal subtypes from a single mouse. We report here profiling of striatal medium spiny neuron (MSN) subtypes, genetically defined by expression of Adenosine 2a Receptor (A2a) or Dopamine Receptor D1 (D1), which differentially regulate reward processing and pathophysiology. Using ICuRuS, we defined genome-wide, A2a- or D1-specific combinatorial hPTM profiles, and discovered regulatory epigenomic features at genes implicated in neurobiological function and disease.

neuroscience↗