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可卡因依赖引起的运动敏化和条件性位置偏爱获得需要通过 cAMP、NCS-Rapgef2、ERK 和 Egr-1/Zif268 途径的 D1 多巴胺能信号传导。

Cocaine-Dependent Acquisition of Locomotor Sensitization and Conditioned Place Preference Requires D1 Dopaminergic Signaling through a Cyclic AMP, NCS-Rapgef2, ERK, and Egr-1/Zif268 Pathway.

机构信息

Section on Molecular Neuroscience.

Dendritic Dynamics Hub, National Institute of Mental Health Intramural Research Program, Bethesda, Maryland 20892.

出版信息

J Neurosci. 2021 Jan 27;41(4):711-725. doi: 10.1523/JNEUROSCI.1497-20.2020. Epub 2020 Dec 2.

Abstract

Elucidation of the mechanism of dopamine signaling to ERK that underlies plasticity in dopamine D1 receptor-expressing neurons leading to acquired cocaine preference is incomplete. NCS-Rapgef2 is a novel cAMP effector, expressed in neuronal and endocrine cells in adult mammals, that is required for D1 dopamine receptor-dependent ERK phosphorylation in mouse brain. In this report, we studied the effects of abrogating NCS-Rapgef2 expression on cAMP-dependent ERK→Egr-1/Zif268 signaling in cultured neuroendocrine cells; in D1 medium spiny neurons of NAc slices; and in either male or female mouse brain in a region-specific manner. NCS-Rapgef2 gene deletion in the NAc in adult mice, using adeno-associated virus-mediated expression of cre recombinase, eliminated cocaine-induced ERK phosphorylation and Egr-1/Zif268 upregulation in D1-medium spiny neurons and cocaine-induced behaviors, including locomotor sensitization and conditioned place preference. Abrogation of NCS-Rapgef2 gene expression in mPFC and BLA, by crossing mice bearing a floxed Rapgef2 allele with a cre mouse line driven by calcium/calmodulin-dependent kinase IIα promoter also eliminated cocaine-induced phospho-ERK activation and Egr-1/Zif268 induction, but without effect on the cocaine-induced behaviors. Our results indicate that NCS-Rapgef2 signaling to ERK in dopamine D1 receptor-expressing neurons in the NAc, but not in corticolimbic areas, contributes to cocaine-induced locomotor sensitization and conditioned place preference. Ablation of cocaine-dependent ERK activation by elimination of NCS-Rapgef2 occurred with no effect on phosphorylation of CREB in D1 dopaminoceptive neurons of NAc. This study reveals a new cAMP-dependent signaling pathway for cocaine-induced behavioral adaptations, mediated through NCS-Rapgef2/phospho-ERK activation, independently of PKA/CREB signaling. ERK phosphorylation in dopamine D1 receptor-expressing neurons exerts a pivotal role in psychostimulant-induced neuronal gene regulation and behavioral adaptation, including locomotor sensitization and drug preference in rodents. In this study, we examined the role of dopamine signaling through the D1 receptor via a novel pathway initiated through the cAMP-activated guanine nucleotide exchange factor NCS-Rapgef2 in mice. NCS-Rapgef2 in the NAc is required for activation of ERK and Egr-1/Zif268 in D1 dopaminoceptive neurons after acute cocaine administration, and subsequent enhanced locomotor response and drug seeking behavior after repeated cocaine administration. This novel component in dopamine signaling provides a potential new target for intervention in psychostimulant-shaped behaviors, and new understanding of how D1-medium spiny neurons encode the experience of psychomotor stimulant exposure.

摘要

多巴胺信号转导至 ERK 的机制阐明,该机制是多巴胺 D1 受体表达神经元可塑性的基础,导致获得性可卡因偏好。NCS-Rapgef2 是一种新型的 cAMP 效应物,在成年哺乳动物的神经元和内分泌细胞中表达,是小鼠脑中 D1 多巴胺受体依赖性 ERK 磷酸化所必需的。在本报告中,我们研究了破坏 NCS-Rapgef2 表达对培养的神经内分泌细胞中 cAMP 依赖性 ERK→Egr-1/Zif268 信号传导的影响;在 NAc 切片中的 D1 中脑皮层神经元中;以及以特定区域的方式在雄性或雌性小鼠脑中。使用腺相关病毒介导的 cre 重组酶表达,在成年小鼠的 NAc 中删除 NCS-Rapgef2 基因,消除了可卡因诱导的 D1-中等棘突神经元中的 ERK 磷酸化和 Egr-1/Zif268 的上调,以及可卡因诱导的行为,包括运动敏化和条件性位置偏好。通过与钙/钙调蛋白依赖性激酶 IIα启动子驱动的 cre 小鼠系杂交,在 mPFC 和 BLA 中删除 Rapgef2 基因表达,也消除了可卡因诱导的磷酸化 ERK 激活和 Egr-1/Zif268 诱导,但对可卡因诱导的行为没有影响。我们的结果表明,NCS-Rapgef2 信号转导至 NAc 中的多巴胺 D1 受体表达神经元中的 ERK,但不涉及皮质边缘区,有助于可卡因诱导的运动敏化和条件性位置偏好。通过消除 NCS-Rapgef2 消除可卡因依赖性 ERK 激活不会影响 NAc 中 D1 多巴胺能神经元中 CREB 的磷酸化。这项研究揭示了一种新的 cAMP 依赖性信号通路,用于可卡因诱导的行为适应,通过 NCS-Rapgef2/磷酸化 ERK 激活介导,与 PKA/CREB 信号通路无关。多巴胺 D1 受体表达神经元中的 ERK 磷酸化在精神兴奋剂诱导的神经元基因调节和行为适应中发挥关键作用,包括啮齿动物的运动敏化和药物偏好。在这项研究中,我们通过在小鼠中启动新型 cAMP 激活鸟嘌呤核苷酸交换因子 NCS-Rapgef2 的途径,研究了多巴胺通过 D1 受体的信号转导作用。NAc 中的 NCS-Rapgef2 是急性可卡因给药后 D1 多巴胺能神经元中 ERK 和 Egr-1/Zif268 激活所必需的,随后在重复可卡因给药后增强运动反应和药物寻求行为。这种多巴胺信号转导中的新型成分提供了干预精神兴奋剂形成行为的潜在新靶点,并提供了关于 D1-中等棘突神经元如何编码精神运动兴奋剂暴露体验的新认识。

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