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突触前毒蕈碱型乙酰胆碱受体与TrkB受体在发育过程中协同作用以消除多余的运动神经末梢。

Presynaptic Muscarinic Acetylcholine Receptors and TrkB Receptor Cooperate in the Elimination of Redundant Motor Nerve Terminals during Development.

作者信息

Nadal Laura, Garcia Neus, Hurtado Erica, Simó Anna, Tomàs Marta, Lanuza Maria A, Cilleros Victor, Tomàs Josep

机构信息

Unitat d'Histologia i Neurobiologia (UHN), Facultat de Medicina i Ciències de la Salut, Universitat Rovira i Virgili Reus, Spain.

出版信息

Front Aging Neurosci. 2017 Feb 8;9:24. doi: 10.3389/fnagi.2017.00024. eCollection 2017.

Abstract

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, M-, M- and M-subtypes) and the tyrosine kinase B (TrkB) receptor in the control of axonal elimination after the mice muscle had been exposed to several selective antagonist of the corresponding receptor pathways . Our previous results show that M, M and TrkB signaling individually increase axonal loss rate around P9. Here we show that although the M and TrkB receptors cooperate and add their respective individual effects to increase axonal elimination rate even more, the effect of the M receptor is largely independent of both M and TrkB receptors. Thus both, cooperative and non-cooperative signaling mechanisms contribute to developmental synapse elimination.

摘要

神经系统的发育涉及突触的过度生成,但通过赫布式活动依赖的轴突竞争来优化连接性。新生的骨骼肌纤维由多个轴突支配,但在竞争过程结束后的几天后,最终由单个轴突支配。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,来研究毒蕈碱自身受体(mAChR,M-、M-和M-亚型)和酪氨酸激酶B(TrkB)受体在小鼠肌肉暴露于相应受体途径的几种选择性拮抗剂后,对轴突消除控制中的可能协同作用。我们之前的结果表明,M、M和TrkB信号传导各自在出生后第9天左右增加轴突损失率。在此我们表明,尽管M和TrkB受体协同作用并叠加各自的单独效应以进一步提高轴突消除率,但M受体 的效应在很大程度上独立于M和TrkB受体。因此,协同和非协同信号传导机制都有助于发育性突触消除。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53b0/5296322/f3be8680c3a2/fnagi-09-00024-g0001.jpg

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