Mu阿片受体对小鼠小脑皮质平行纤维浦肯野细胞突触传递影响的机制

IF 2.8 4区 医学 Q2 NEUROSCIENCES
Yi Yang, Jinliang Bai, Jianyuan Sun, Ting Ye, Lu Zhang, Fengfeng Wu, Jun Nan, Yan Lan
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引用次数: 2

摘要

μ-阿片受体(μ-opioid receptor, MOR)在大脑中广泛表达,在不同区域密度不同。MORs的激活是镇痛、欣快的基础,但也可能导致耐受性、依赖性,最终导致阿片类药物成瘾。浦肯野细胞(PC)是小脑皮层中唯一的传出神经元,接受由颗粒细胞轴突形成的平行纤维的谷氨酸突触输入。研究表明MORs在小脑细胞发育过程中表达。然而,MOR的分布及其对PF-PC突触传递的影响尚不清楚。为了研究这些问题,我们使用全细胞膜片钳记录和药理学方法来确定MOR激活对PF-PC突触突触传递的影响和机制。mor选择性激动剂DAMGO显著降低了PF-PC诱发的(e) EPSCs的振幅和曲线下面积(AUC),增加了配对脉冲比(PPR)。damgo诱导的对PF-PC eEPSCs和PPR的抑制作用被MOR特异性阻断剂CTOP消除。此外,DAMGO显著降低了PF-PC mEPSCs的频率,但对其振幅没有明显影响,提示其作用于突触前部位。damgo诱导的PF-PC mEPSCs频率的降低也被CTOP阻断。在移液中加入蛋白激酶A (PKA)抑制剂PKI对DAMGO诱导的PF-PC mEPSCs的抑制作用不受影响。人工脑脊液(ACSF)中PKA抑制剂K5720和MEK抑制剂U0126均可阻止DAMGO对PF-PC mEPSCs的抑制作用。这些发现表明MORs在突触前PF轴突末端表达,DAMGO可以通过调节谷氨酸的释放激活突触前MORs抑制PF- pc突触传递。g蛋白依赖性cAMP-PKA信号通路可能参与了这一过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanisms Underlying Mu Opioid Receptor Effects on Parallel Fiber-Purkinje Cell Synaptic Transmission in Mouse Cerebellar Cortex
μ-opioid receptors (MOR) are widely expressed in the brain, varying in density in different areas. Activation of MORs underlies analgesia, euphoria, but may lead to tolerance, dependence, and ultimately opioid addiction. The Purkinje cell (PC) is the only efferent neuron in the cerebellar cortex and receives glutamatergic synaptic inputs from the parallel fibers formed by the axons of granule cells. Studies have shown that MORs are expressed during the development of cerebellar cells. However, the distribution of MOR and their effects on PF-PC synaptic transmission remain unclear. To examine these questions, we used whole-cell patch clamp recordings and pharmacological methods to determine the effects and mechanisms of MOR activation on synaptic transmission at PF-PC synapses. The MOR-selective agonist DAMGO significantly reduced the amplitude and area under the curve (AUC) of PF-PC evoked (e) EPSCs, and increased the paired-pulse ratio (PPR).DAMGO-induced inhibitory effects on PF-PC eEPSCs and PPR were abolished by MOR specific blocker CTOP. Further, DAMGO significantly reduced the frequency of PF-PC mEPSCs, but had no obvious effect on their amplitude, suggesting a presynaptic site of action. The DAMGO-induced reduction in the frequency of PF-PC mEPSCs also was blocked by CTOP. A protein kinase A (PKA) inhibitor PKI added in the pipette solution did not affect the inhibitory effects on PF-PC mEPSCs induced by DAMGO. Both the PKA inhibitor K5720 and MEK inhibitor U0126 in artificial cerebrospinal fluid (ACSF) prevented the inhibitory effects of DAMGO on PF-PC mEPSCs. These findings reveal that MORs are expressed in presynaptic PF axon terminals, where DAMGO can activate presynaptic MORs to inhibit PF-PC synaptic transmission by regulating the release of glutamate. G-protein-dependent cAMP-PKA signaling pathway may be involved in this process.
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来源期刊
CiteScore
7.10
自引率
2.70%
发文量
74
审稿时长
14 weeks
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