bioRxiv · 10.1101/2022.08.27.505547
Cell-type-specific whole-genome landscape of ΔFOSB binding in nucleus accumbens after chronic cocaine exposure
Abstract
The ability of neurons to respond to external stimuli involves adaptations of gene expression. The transcription factor, {Delta}FOSB, is important for the development of drug addiction, however, its gene targets have not been identified. Here we use CUT&RUN to map the genome-wide enrichment of {Delta}FOSB binding in the two major neuronal cell types of the nucleus accumbens, a key brain reward region, after cocaine exposure. The binding landscape shows that the majority of {Delta}FOSB peaks occur outside of promoter regions, including intergenic regions, and are surrounded by epigenetic marks indicative of active enhancers. BRG1, the core subunit of the SWI/SNF chromatin remodeling complex, overlaps with {Delta}FOSB peaks, consistent with earlier studies of {Delta}FOSBs interacting proteins. In addition, in silico analyses predict that {Delta}FOSB cooperatively regulates gene expression with homeobox and T-box transcription factors. These novel findings uncover key elements of {Delta}FOSBs molecular mechanisms in transcriptional regulation.
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Yeh, S.-Y., Estill, M., Lardner, C. K., Browne, C. J., Minier-Toribio, A., Futamura, R., Beach, K., McManus, C. A., Xu, S.-j., Zhang, S., Heller, E. A., Shen, L., Nestler, E. J.. 2022-08-27. Cell-type-specific whole-genome landscape of ΔFOSB binding in nucleus accumbens after chronic cocaine exposure. https://doi.org/10.1101/2022.08.27.505547
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