首页> 外文期刊>Advances in Experimental Medicine and Biology >Roles of neuronal activity-induced gene products in Hebbian and homeostatic synaptic plasticity, tagging, and capture.
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Roles of neuronal activity-induced gene products in Hebbian and homeostatic synaptic plasticity, tagging, and capture.

机译:神经元活动诱导的基因产物在Hebbian和稳态突触可塑性,标记和捕获中的作用。

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摘要

The efficiency of synaptic transmission undergoes plastic modification in response to changes in input activity. This phenomenon is most commonly referred to as synaptic plasticity and can involve different cellular mechanisms over time. In the short term, typically in the order of minutes to 1 h, synaptic plasticity is mediated by the actions of locally existing proteins. In the longer term, the synthesis of new proteins from existing or newly synthesized mRNAs is required to maintain the changes in synaptic transmission. Many studies have attempted to identify genes induced by neuronal activity and to elucidate the functions of the encoded proteins. In this chapter, we describe our current understanding of how activity can regulate the synthesis of new proteins, how the distribution of the newly synthesized protein is regulated in relation to the synapses undergoing plasticity and the function of these proteins in both Hebbian and homeostatic synaptic plasticity.
机译:响应于输入活动的变化,突触传递的效率发生塑性变化。这种现象最通常被称为突触可塑性,并且随着时间的推移可能涉及不同的细胞机制。在短期内,通常在几分钟到1小时内,突触可塑性由局部存在的蛋白质的作用介导。从长远来看,需要从现有或新合成的mRNA合成新蛋白,以维持突触传递的变化。许多研究已经尝试鉴定由神经元活性诱导的基因并阐明编码蛋白的功能。在本章中,我们描述了我们目前对活性如何调节新蛋白的​​合成,新合成蛋白的分布与突触经历可塑性的关系以及这些蛋白在希伯来语和稳态突触可塑性中的功能的调控的理解。 。

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