Cell type-specific transcriptional programs in mouse prefrontal cortex during adolescence and addiction

被引:0
作者
Aritra Bhattacherjee
Mohamed Nadhir Djekidel
Renchao Chen
Wenqiang Chen
Luis M. Tuesta
Yi Zhang
机构
[1] Boston Children’s Hospital,Howard Hughes Medical Institute
[2] Boston Children’s Hospital,Program in Cellular and Molecular Medicine
[3] Boston Children’s Hospital,Division of Hematology/Oncology, Department of Pediatrics
[4] Harvard Medical School,Department of Genetics
来源
Nature Communications | / 10卷
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摘要
Coordinated activity-induced transcriptional changes across multiple neuron subtypes of the prefrontal cortex (PFC) play a pivotal role in encoding and regulating major cognitive behaviors. Yet, the specific transcriptional programs in each neuron subtype remain unknown. Using single-cell RNA sequencing (scRNA-seq), here we comprehensively classify all unique cell subtypes in the PFC. We analyze transcriptional dynamics of each cell subtype under a naturally adaptive and an induced condition. Adaptive changes during adolescence (between P21 and P60), a highly dynamic phase of postnatal neuroplasticity, profoundly impacted transcription in each neuron subtype, including cell type-specific regulation of genes implicated in major neuropsychiatric disorders. On the other hand, an induced plasticity evoked by chronic cocaine addiction resulted in progressive transcriptional changes in multiple neuron subtypes and became most pronounced upon prolonged drug withdrawal. Our findings lay a foundation for understanding cell type-specific postnatal transcriptional dynamics under normal PFC function and in neuropsychiatric disease states.
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