首页> 美国卫生研究院文献>Frontiers in Aging Neuroscience >Presynaptic Muscarinic Acetylcholine Receptors and TrkB Receptor Cooperate in the Elimination of Redundant Motor Nerve Terminals during Development
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Presynaptic Muscarinic Acetylcholine Receptors and TrkB Receptor Cooperate in the Elimination of Redundant Motor Nerve Terminals during Development

机译:突触前毒蕈碱乙酰胆碱受体和TrkB受体合作消除在开发过程中多余的运动神经末梢。

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摘要

The development of the nervous system involves the overproduction of synapses but connectivity is refined by Hebbian activity-dependent axonal competition. The newborn skeletal muscle fibers are polyinnervated but, at the end of the competition process, some days later, become innervated by a single axon. We used quantitative confocal imaging of the autofluorescent axons from transgenic B6.Cg-Tg (Thy1-YFP)16 Jrs/J mice to investigate the possible cooperation of the muscarinic autoreceptors (mAChR, M1-, M2- and M4-subtypes) and the tyrosine kinase B (TrkB) receptor in the control of axonal elimination after the mice Levator auris longus (LAL) muscle had been exposed to several selective antagonist of the corresponding receptor pathways in vivo. Our previous results show that M1, M2 and TrkB signaling individually increase axonal loss rate around P9. Here we show that although the M1 and TrkB receptors cooperate and add their respective individual effects to increase axonal elimination rate even more, the effect of the M2 receptor is largely independent of both M1 and TrkB receptors. Thus both, cooperative and non-cooperative signaling mechanisms contribute to developmental synapse elimination.
机译:神经系统的发育涉及突触的过度产生,但通过依赖于希伯来活动的轴突竞争来改善连接性。新生骨骼肌纤维被多神经支配,但是在比赛过程的最后几天,几天后,它被单个轴突支配。我们使用来自转基因B6.Cg-Tg(Thy1-YFP)16 Jrs / J小鼠的自发荧光轴突的定量共聚焦成像,以研究毒蕈碱自体受体(mAChR,M1-,M2-和M4-亚型)和小鼠左耳长肌(LAL)肌肉已暴露于体内相应受体途径的几种选择性拮抗剂后,控制轴突消除的酪氨酸激酶B(TrkB)受体。我们以前的结果表明,M1,M2和TrkB信号分别增加P9周围的轴突丢失率。在这里,我们显示,尽管M1和TrkB受体相互配合并添加各自的作用,以进一步提高轴突消除率,但M2受体的作用在很大程度上独立于M1和TrkB受体。因此,合作和非合作信号机制均有助于消除发育突触。

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