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5型腺苷酸环化酶有助于皮质纹状体可塑性和纹状体依赖性学习。

Adenylyl cyclase type 5 contributes to corticostriatal plasticity and striatum-dependent learning.

作者信息

Kheirbek Mazen A, Britt Jon P, Beeler Jeff A, Ishikawa Yoshihiro, McGehee Daniel S, Zhuang Xiaoxi

机构信息

Department of Neurobiology and Anesthesia, The University of Chicago, Chicago, Illinois 60637, USA.

出版信息

J Neurosci. 2009 Sep 30;29(39):12115-24. doi: 10.1523/JNEUROSCI.3343-09.2009.

Abstract

Dopamine (DA)-dependent corticostriatal plasticity is thought to underlie incremental procedural learning. A primary effector of striatal DA signaling is cAMP, yet its role in corticostriatal plasticity and striatum-dependent learning remains unclear. Here, we show that genetic deletion of a striatum-enriched isoform of adenylyl cyclase, AC5 knock-out (AC5KO), impairs two forms of striatum-dependent learning and corticostriatal synaptic plasticity. AC5KO mice were severely impaired in acquisition of a response strategy in the cross maze, a striatum-dependent task requiring a correct body turn to find a goal arm. In addition, AC5KO mice were impaired in acquisition of a motor skill, as assessed by the accelerated rotarod. Slice electrophysiology revealed a deficit in corticostriatal long-term depression (LTD) after high-frequency stimulation of tissue from AC5KO mice. LTD was rescued by activation of either presynaptic cannabinoid type 1 (CB(1)) receptors or postsynaptic metabotropic glutamate receptors (mGluRs), suggesting a postsynaptic role of AC5-cAMP, upstream of endocannabinoid release. In striatopallidal-projecting medium spiny neurons, DA D(2) receptors are negatively coupled to cAMP production, and activation of these receptors is required for endocannabinoid release and corticostriatal LTD. Recordings from striatopallidal neurons indicated that this is mediated by AC5, because coactivation of D(2) and mGluRs could induce LTD in wild-type but not in AC5KO neurons. To further examine the role of cAMP in corticostriatal plasticity, we elevated cAMP in striatal neurons of wild-type mice via the recording electrode. Under these conditions, corticostriatal LTD was eliminated. Together, these data suggest an AC5-cAMP-endocannabinoid-CB(1) signaling pathway in corticostriatal plasticity and striatum-dependent learning.

摘要

多巴胺(DA)依赖的皮质纹状体可塑性被认为是渐进性程序学习的基础。纹状体DA信号的主要效应分子是cAMP,但其在皮质纹状体可塑性和纹状体依赖学习中的作用仍不清楚。在这里,我们表明,腺苷酸环化酶的一种纹状体富集亚型(AC5)基因敲除(AC5KO)会损害两种形式的纹状体依赖学习和皮质纹状体突触可塑性。AC5KO小鼠在十字迷宫中获取反应策略时严重受损,十字迷宫是一项依赖纹状体的任务,需要正确转身才能找到目标臂。此外,通过加速转棒试验评估,AC5KO小鼠在运动技能的获取方面也受损。切片电生理学显示,高频刺激AC5KO小鼠的组织后,皮质纹状体长期抑郁(LTD)存在缺陷。通过激活突触前1型大麻素(CB(1))受体或突触后代谢型谷氨酸受体(mGluRs)可挽救LTD,这表明AC5-cAMP在大麻素释放上游具有突触后作用。在向苍白球投射的中等棘状神经元中,DA D(2)受体与cAMP生成呈负偶联,这些受体的激活是内源性大麻素释放和皮质纹状体LTD所必需的。来自苍白球神经元的记录表明,这是由AC5介导的,因为D(2)和mGluRs的共同激活可在野生型神经元而非AC5KO神经元中诱导LTD。为了进一步研究cAMP在皮质纹状体可塑性中的作用,我们通过记录电极提高了野生型小鼠纹状体神经元中的cAMP水平。在这些条件下,皮质纹状体LTD被消除。总之,这些数据表明在皮质纹状体可塑性和纹状体依赖学习中存在AC5-cAMP-内源性大麻素-CB(1)信号通路。

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