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内源性大麻素诱导的上橄榄复合体中甘氨酸能突触去极化抑制。

Depolarization-induced suppression of a glycinergic synapse in the superior olivary complex by endocannabinoids.

机构信息

Department of Biology II, Division of Neurobiology, Ludwig Maximilians University Munich, Martinsried, Germany; Graduate School of Systemic Neurosciences, Ludwig Maximilians University Munich, Martinsried, Germany.

出版信息

J Neurochem. 2013 Oct;127(1):78-90. doi: 10.1111/jnc.12369. Epub 2013 Aug 5.

Abstract

The neuronal endocannabinoid system is known to depress synaptic inputs retrogradely in an activity-dependent manner. This mechanism has been generally described for excitatory glutamatergic and inhibitory GABAergic synapses. Here, we report that neurones in the auditory brainstem of the Mongolian gerbil (Meriones unguiculatus) retrogradely regulate the strength of their inputs via the endocannabinoid system. By means of whole-cell patch-clamp recordings, we found that retrograde endocannabinoid signalling attenuates both glycinergic and glutamatergic post-synaptic currents in the same types of neurones. Accordingly, we detected the cannabinoid receptor 1 in excitatory and inhibitory pre-synapses as well as the endocannabinoid-synthesising enzymes (diacylglycerol lipase α/β, DAGLα/β) post-synaptically through immunohistochemical stainings. Our study was performed with animals aged 10-15 days, that is, in the time window around the onset of hearing. Therefore, we suggest that retrograde endocannabinoid signalling has a role in adapting inputs during the functionally important switch from spontaneously generated to sound-related signals.

摘要

已知神经元内源性大麻素系统以活动依赖性方式逆行抑制突触传入。这种机制通常被描述为兴奋性谷氨酸能和抑制性 GABA 能突触。在这里,我们报告说,蒙古沙鼠(Meriones unguiculatus)的听觉脑干神经元通过内源性大麻素系统逆行调节其输入的强度。通过全细胞膜片钳记录,我们发现逆行内源性大麻素信号减弱了相同类型神经元中的甘氨酸能和谷氨酸能突触后电流。因此,我们通过免疫组织化学染色在兴奋性和抑制性突触前以及突触后检测到了大麻素受体 1 和内源性大麻素合成酶(二酰基甘油脂肪酶 α/β,DAGLα/β)。我们的研究是在年龄为 10-15 天的动物身上进行的,即在听力开始前后的功能重要转换期间。因此,我们认为逆行内源性大麻素信号在从自发产生的信号到与声音相关的信号的功能重要转换期间,在适应输入方面发挥作用。

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