首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Muscarinic receptor subtypes differentially control synaptic input and excitability of cerebellum-projecting medial vestibular nucleus neurons
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Muscarinic receptor subtypes differentially control synaptic input and excitability of cerebellum-projecting medial vestibular nucleus neurons

机译:毒蕈碱受体亚型差异控制突触输入和小脑投射内侧前庭核神经元的兴奋性。

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Neurons in the vestibular nuclei have a vital function in balance maintenance, gaze stabilization, and posture. Although muscarinic acetylcholine receptors (mAChRs) are expressed and involved in regulating vestibular function, it remains unclear how individual mAChR subtypes regulate vestibular neuronal activity. In this study, we determined which specific subtypes of mAChRs control synaptic input and excitability of medial vestibular nucleus (MVN) neurons that project to the cerebellum. Cerebellum-projecting MVN neurons were labeled by a fluorescent retrograde tracer and then identified in rat brainstem slices. Quantitative PCR analysis suggested that M2 and M3 were the possible major mAChR subtypes expressed in the MVN. The mAChR agonist oxotremorine-M significantly reduced the amplitude of glutamatergic excitatory post-synaptic currents evoked by stimulation of vestibular primary afferents, and this effect was abolished by the M2-preferring antagonist AF-DX 116. However, oxotremorine-M had no effect on GABA-mediated spontaneous inhibitory post-synaptic currents of labeled MVN neurons. Furthermore, oxotremorine-M significantly increased the firing activity of labeled MVN neurons, and this effect was blocked by the M3-preferring antagonist J104129 in most neurons tested. In addition, AF-DX 116 reduced the onset latency and prolonged the excitatory effect of oxotremorine-M on the firing activity of labeled MVN neurons. Our findings suggest that M3 is the predominant post-synaptic mAChR involved in muscarinic excitation of cerebellum-projecting MVN neurons. Pre-synaptic M2 mAChR regulates excitatory glutamatergic input from vestibular primary afferents, which in turn influences the excitability of cerebellum-projecting MVN neurons. This new information has important therapeutic implications for treating vestibular disorders with mAChR subtype-selective agents.
机译:前庭核中的神经元在维持平衡,凝视稳定和姿势方面起着至关重要的作用。尽管毒蕈碱型乙酰胆碱受体(mAChRs)被表达并参与调节前庭功能,但尚不清楚单个mAChR亚型如何调节前庭神经元活性。在这项研究中,我们确定了mAChRs的哪些特定亚型控制着突触输入和投射到小脑的内侧前庭神经核(MVN)神经元的兴奋性。用荧光逆行示踪剂标记小脑投射的MVN神经元,然后在大鼠脑干切片中鉴定。定量PCR分析表明,M2和M3是MVN中表达的可能的主要mAChR亚型。 mAChR激动剂oxotremorine-M显着降低了前庭初级传入神经刺激引起的谷氨酸能兴奋性突触后电流的幅度,而M2首选拮抗剂AF-DX 116取消了这种作用。但是,oxotremorine-M对M2拮抗剂没有作用。 GABA介导的标记的MVN神经元的自发性突触后抑制电流。此外,oxotremorine-M显着提高了标记的MVN神经元的放电活性,在大多数测试的神经元中,M3首选拮抗剂J104129阻止了这种作用。另外,AF-DX 116减少了发作潜伏期,并延长了氧代雷莫林-M对标记的MVN神经元的激发活性的兴奋作用。我们的发现表明,M3是参与小脑投射MVN神经元毒蕈碱激发的主要突触后mAChR。突触前M2 mAChR调节前庭初级传入神经的兴奋性谷氨酸能输入,进而影响小脑投射MVN神经元的兴奋性。这一新信息对于使用mAChR亚型选择剂治疗前庭疾病具有重要的治疗意义。

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