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Spinal cholinergic interneurons differentially control motoneuron excitability and alter the locomotor network operational range

机译:脊髓胆碱能神经元差异控制运动神经元兴奋性并改变运动网络的工作范围

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摘要

While cholinergic neuromodulation is important for locomotor circuit operation, the specific neuronal mechanisms that acetylcholine employs to regulate and fine-tune the speed of locomotion are largely unknown. Here, we show that cholinergic interneurons are present in the zebrafish spinal cord and differentially control the excitability of distinct classes of motoneurons (slow, intermediate and fast) in a muscarinic dependent manner. Moreover, we reveal that m2-type muscarinic acetylcholine receptors (mAChRs) are present in fast and intermediate motoneurons, but not in the slow motoneurons, and that their activation decreases neuronal firing. We also reveal a strong correlation between the muscarinic receptor configuration on motoneurons and the ability of the animals to locomote at different speeds, which might serve as a plasticity mechanism to alter the operational range of the locomotor networks. These unexpected findings provide new insights into the functional flexibility of motoneurons and how they execute locomotion at different speeds.
机译:尽管胆碱能神经调节对于运动回路的操作很重要,但是乙酰胆碱用来调节和微调运动速度的特定神经元机制在很大程度上尚不清楚。在这里,我们显示胆碱能中神经元存在于斑马鱼脊髓中,并以毒蕈碱依赖性方式差异性控制不同类别​​的运动神经元(慢,中,快)的兴奋性。此外,我们发现m2型毒蕈碱型乙酰胆碱受体(mAChRs)存在于快速和中等运动神经元中,而在慢运动神经元中不存在,并且它们的激活会降低神经元放电。我们还揭示了运动神经元上毒蕈碱受体的构型与动物以不同速度运动的能力之间的强相关性,这可能是可塑性机制,以改变运动网络的运行范围。这些意外发现为运动神经元的功能灵活性以及它们如何以不同的速度执行运动提供了新的见解。

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