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慢性神经元活动过度诱导的依赖 REST 的突触前稳态。

REST-Dependent Presynaptic Homeostasis Induced by Chronic Neuronal Hyperactivity.

机构信息

Department of Experimental Medicine, Section of Physiology, University of Genova, Viale Benedetto XV 3, 16132, Genoa, Italy.

Center for Synaptic Neuroscience and Technology, Istituto Italiano di Tecnologia, Largo Rosanna Benzi 10, 16132, Genoa, Italy.

出版信息

Mol Neurobiol. 2018 Jun;55(6):4959-4972. doi: 10.1007/s12035-017-0698-9. Epub 2017 Aug 7.

Abstract

Homeostatic plasticity is a regulatory feedback response in which either synaptic strength or intrinsic excitability can be adjusted up or down to offset sustained changes in neuronal activity. Although a growing number of evidences constantly provide new insights into these two apparently distinct homeostatic processes, a unified molecular model remains unknown. We recently demonstrated that REST is a transcriptional repressor critical for the downscaling of intrinsic excitability in cultured hippocampal neurons subjected to prolonged elevation of electrical activity. Here, we report that, in the same experimental system, REST also participates in synaptic homeostasis by reducing the strength of excitatory synapses by specifically acting at the presynaptic level. Indeed, chronic hyperactivity triggers a REST-dependent decrease of the size of synaptic vesicle pools through the transcriptional and translational repression of specific presynaptic REST target genes. Together with our previous report, the data identify REST as a fundamental molecular player for neuronal homeostasis able to downscale simultaneously both intrinsic excitability and presynaptic efficiency in response to elevated neuronal activity. This experimental evidence adds new insights to the complex activity-dependent transcriptional regulation of the homeostatic plasticity processes mediated by REST.

摘要

内稳态可塑性是一种调节反馈反应,其中突触强度或内在兴奋性可以向上或向下调整,以抵消神经元活动的持续变化。尽管越来越多的证据不断提供对这两种明显不同的内稳态过程的新见解,但统一的分子模型仍然未知。我们最近表明,REST 是一种转录抑制剂,对于培养的海马神经元中由于电活动持续升高而导致的内在兴奋性下调至关重要。在这里,我们报告说,在相同的实验系统中,REST 还通过在突触前水平特异性作用来参与突触内稳态,从而降低兴奋性突触的强度。事实上,慢性过度活跃会触发通过转录和翻译抑制特定突触前 REST 靶基因来减少突触小泡池的大小的 REST 依赖性减少。与我们之前的报告一起,这些数据确定 REST 作为神经元内稳态的基本分子参与者,能够响应升高的神经元活动,同时下调内在兴奋性和突触前效率。这一实验证据为由 REST 介导的内稳态可塑性过程的复杂依赖于活动的转录调节增加了新的见解。

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