首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Reduced gap junctional coupling leads to uncorrelated motor neuron firing and precocious neuromuscular synapse elimination
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Reduced gap junctional coupling leads to uncorrelated motor neuron firing and precocious neuromuscular synapse elimination

机译:间隙连接耦合的减少导致不相关的运动神经元放电和早熟的神经肌肉突触消除

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摘要

During late embryonic and early postnatal life, neuromuscular junctions undergo synapse elimination that is modulated by patterns of motor neuron activity. Here, we test the hypothesis that reduced spinal neuron gap junctional coupling decreases temporally correlated motor neuron activity that, in turn, modulates neuromuscular synapse elimination, by using mutant mice lacking connexin 40 (Cx40), a developmentally regulated gap junction protein expressed in motor and other spinal neurons. In Cx40−/− mice, electrical coupling among lumbar motor neurons, measured by whole-cell recordings, was reduced, and single motor unit recordings in awake, behaving neonates showed that temporally correlated motor neuron activity was also reduced. Immunostaining and intracellular recording showed that the neuromuscular synapse elimination was accelerated in muscles from Cx40−/− mice compared with WT littermates. Our work shows that gap junctional coupling modulates neuronal activity patterns that, in turn, mediate synaptic competition, a process that shapes synaptic circuitry in the developing brain.
机译:在胚胎后期和出生后早期,神经肌肉接头会经历突触消除,这是由运动神经元活动模式调节的。在这里,我们测试了以下假设:使用缺乏连接蛋白40(Cx40)的突变小鼠缺乏连接蛋白40(Cx40),该蛋白在运动和运动过程中表达受到调控,从而减少了脊髓神经元间隙连接偶联减少了时间相关的运动神经元活动,进而调节了神经肌肉突触的消除。其他脊髓神经元。在Cx40 -/-小鼠中,通过全细胞记录测得的腰部运动神经元之间的电耦合减少,行为清醒的新生儿的单个运动单位记录表明,与时间相关的运动神经元活动也减少。免疫染色和细胞内记录表明,与野生型同窝小鼠相比,Cx40 -/-小鼠的肌肉中神经肌肉突触的消除被加速。我们的工作表明,间隙连接偶联调节神经元活动模式,进而调节突触竞争,这一过程在发育中的大脑中形成突触电路。

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