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Astrocytic CREB regulates transcriptomic, neuronal, and behavioral responses to cocaine

GSE308399 Mus musculus Genome binding/occupancy profiling by high throughput sequencing 16 samples 2025/09/24 GPL21103
Summary
Emerging evidence increasingly indicates that astrocytes are involved in neuropsychiatric disorders, including addiction, but the cocaine-induced astrocyte transcriptome has yet to be investigated. We performed RNA-sequencing on whole-cell sorted astrocytes from the nucleus accumbens and bioinformatically characterized the astrocyte transcriptome following cocaine self-administration in male mice. We found that astrocytes exhibit robust and contextually-specific transcriptional signatures that implicate CREB as a cocaine-induced transcriptional regulator in astrocytes. CUT&RUN-sequencing revealed increased astrocytic CREB DNA binding in response to cocaine. Viral-mediated manipulation of NAc astrocytic CREB activity in combination with addiction-related behaviors revealed that astrocytic CREB increases the rewarding and reinforcing properties of cocaine. Furthermore, we identified potential molecular mechanisms of astrocytic CREB’s influence through modulating astrocytic calcium dynamics and selectively increasing D1-type medium spiny neuronal activity.
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