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bioRxiv. 2024 Jun 18:2024.06.17.599348. doi: 10.1101/2024.06.17.599348.
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Reelin标记可卡因激活的纹状体神经元集群,促进神经元兴奋性,并调节可卡因奖赏。

Reelin marks cocaine-activated striatal ensembles, promotes neuronal excitability, and regulates cocaine reward.

作者信息

Brida Kasey L, Jorgensen Emily T, Phillips Robert A, Newman Catherine E, Tuscher Jennifer J, Morring Emily K, Zipperly Morgan E, Ianov Lara, Montgomery Kelsey D, Tippani Madhavi, Hyde Thomas M, Maynard Kristen R, Martinowich Keri, Day Jeremy J

出版信息

bioRxiv. 2024 Jun 18:2024.06.17.599348. doi: 10.1101/2024.06.17.599348.

DOI:10.1101/2024.06.17.599348
PMID:38948801
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11212904/
Abstract

Drugs of abuse activate defined neuronal ensembles in brain reward structures such as the nucleus accumbens (NAc), which are thought to promote the enduring synaptic, circuit, and behavioral consequences of drug exposure. While the molecular and cellular effects arising from experience with drugs like cocaine are increasingly well understood, the mechanisms that sculpt NAc ensemble participation are largely unknown. Here, we leveraged unbiased single-nucleus transcriptional profiling to identify expression of the secreted glycoprotein Reelin (encoded by the gene) as a marker of cocaine-activated neuronal ensembles within the rat NAc. Multiplexed in situ detection confirmed selective expression of the immediate early gene in neurons after cocaine experience, and also revealed enrichment of mRNA in + medium spiny neurons (MSNs) in both the rat and human brain. Using a novel CRISPR interference strategy enabling selective knockdown in the adult NAc, we observed altered expression of genes linked to calcium signaling, emergence of a transcriptional trajectory consistent with loss of cocaine sensitivity, and a striking decrease in MSN intrinsic excitability. At the behavioral level, loss of prevented cocaine locomotor sensitization, abolished cocaine place preference memory, and decreased cocaine self-administration behavior. Together, these results identify Reelin as a critical mechanistic link between ensemble participation and cocaine-induced behavioral adaptations.

摘要

滥用药物会激活大脑奖赏结构(如伏隔核,NAc)中特定的神经元集群,这些神经元集群被认为会促进药物暴露所导致的持久的突触、神经回路和行为后果。虽然可卡因等药物使用所产生的分子和细胞效应越来越为人所知,但塑造NAc集群参与的机制在很大程度上仍然未知。在这里,我们利用无偏差的单核转录组分析来确定分泌型糖蛋白Reelin(由该基因编码)的表达,作为大鼠NAc内可卡因激活的神经元集群的标志物。多重原位检测证实了可卡因使用后即刻早期基因在神经元中的选择性表达,还揭示了大鼠和人类大脑中Reelin mRNA在D1 + 中型多棘神经元(MSNs)中的富集。使用一种能够在成年NAc中选择性敲低Reelin的新型CRISPR干扰策略,我们观察到与钙信号相关的基因表达发生改变,出现了与可卡因敏感性丧失一致的转录轨迹,并且MSN内在兴奋性显著降低。在行为层面,Reelin缺失可防止可卡因运动敏化,消除可卡因位置偏爱记忆,并减少可卡因自我给药行为。总之,这些结果确定Reelin是集群参与和可卡因诱导的行为适应之间的关键机制联系。