首页> 美国卫生研究院文献>The Journal of Neuroscience >A Null Mutation for the α3 Nicotinic Acetylcholine (ACh) Receptor Gene Abolishes Fast Synaptic Activity in Sympathetic Ganglia and Reveals That ACh Output from Developing Preganglionic Terminals Is Regulated in an Activity-Dependent Retrograde Manner
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A Null Mutation for the α3 Nicotinic Acetylcholine (ACh) Receptor Gene Abolishes Fast Synaptic Activity in Sympathetic Ganglia and Reveals That ACh Output from Developing Preganglionic Terminals Is Regulated in an Activity-Dependent Retrograde Manner

机译:空突变的α3烟碱乙酰胆碱(ACh)受体基因废除交感神经节中的快速突触活动并揭示了从神经节前终末发育中的ACh输出受到活动依赖性逆行方式的调节。

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摘要

In vertebrates, synaptic activity exerts an important influence on the formation of neural circuits, yet our understanding of its role in directing presynaptic and postsynaptic differentiation during synaptogenesis is incomplete. This study investigates how activity influences synaptic differentiation as synapses mature during early postnatal life. Specifically, we ask what happens to presynaptic terminals when synapses develop without functional postsynaptic receptors and without fast synaptic transmission.To address this issue, we investigated cholinergic nicotinic synapses in sympathetic ganglia of mice with a null mutation for the α3 nicotinic ACh receptor gene. Disrupting the α3 gene completely eliminates fast excitatory synaptic potentials on postganglionic sympathetic neurons, establishing a crucial role for α3-containing postsynaptic receptors in synaptic transmission. Interestingly, the preganglionic nerve terminals form morphologically normal synapses with sympathetic neurons, and these synapses persist without activity in postnatal animals. Surprisingly, when stimulating the preganglionic nerve at physiological rates, we discovered a significant decrease in ACh output from the presynaptic terminals in these α3–/– sympathetic ganglia. We show that this decrease in ACh output from the presynaptic terminals results, in part, from a lack of functional high-affinity choline transporters. We conclude the following: (1) fast synaptic transmission in mammalian SCG requires α3 expression; (2) in the absence of activity, the preganglionic nerve forms synapses that appear morphologically normal and persist for several weeks; and (3) to sustain transmitter release, developing presynaptic terminals require an activity-dependent retrograde signal.
机译:在脊椎动物中,突触活动对神经回路的形成具有重要影响,但是我们对它在突触形成过程中对突触前和突触后分化的指导作用的了解还不完整。这项研究调查了出生后早期突触成熟时活动如何影响突触分化。具体来说,我们问当突触在没有功能性突触后受体且没有快速突触传递的情况下发生时突触前末端会发生什么情况。为解决此问题,我们调查了在小鼠交感神经节中胆碱能性烟碱突触,其α3烟碱型ACh受体基因无效突变。破坏α3基因完全消除了节后交感神经元上的快速兴奋性突触电位,对含α3的突触后受体在突触传递中起着至关重要的作用。有趣的是,神经节前神经末梢与交感神经元形成形态正常的突触,并且这些突触在产后动物中持续存在而没有活动。出乎意料的是,当以生理学速率刺激神经节前神经时,我们发现这些α3 – / – 交感神经节中突触前末梢的ACh输出显着降低。我们表明,从突触前终端的乙酰胆碱输出的这种减少,部分原因是缺乏功能性高亲和力胆碱转运蛋白。我们得出以下结论:(1)哺乳动物SCG中的突触传递需要α3表达; (2)在缺乏活动的情况下,神经节前神经形成突触,突触在形态上正常并持续数周; (3)为了维持发射器的释放,突触前期发育需要依赖于活动的逆行信号。

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