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Inverse synaptic tagging: An inactive synapse-specific mechanism to capture activity-induced Arc/arg3.1 and to locally regulate spatial distribution of synaptic weights

机译:逆突触标记:非活动的突触特定机制,用于捕获活动引起的弧形/ arg3.1并局部调节突触权重的空间分布

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Long-lasting forms of synaptic plasticity such as long-term potentiation (LTP) and long-term depression (LTD) are fundamental cellular mechanisms underlying learning and memory. The synaptic tagging and capture (STC) hypothesis has provided a theoretical framework on how products of activity-dependent genes may interact with potentiated synapses to facilitate and maintain such long-lasting synaptic plasticity. Although Arc/arg3.1 was initially assumed to participate in STC processes during LTP, accumulating evidence indicated that Arc/arg3.1 might rather contribute in weakening of synaptic weights than in their strengthening. In particular, analyses of Arc/Arg3.1 protein dynamics and function in the dendrites after plasticity-inducing stimuli have revealed a new type of inactivity-dependent redistribution of synaptic weights, termed "inverse synaptic tagging". The original synaptic tagging and inverse synaptic tagging likely co-exist and are mutually non-exclusive mechanisms, which together may help orchestrate the redistribution of synaptic weights and promote the enhancement and maintenance of their contrast between potentiated and non-potentiated synapses during the late phase of long-term synaptic plasticity. In this review, we describe the inverse synaptic tagging mechanism that controls synaptic dynamics of Arc/Arg3.1, an immediate early gene product which is captured and preferentially targeted to non-potentiated synapses, and discuss its impact on neuronal circuit refinement and cognitive function. (C) 2017 Elsevier Ltd. All rights reserved.
机译:长期增强(LTP)和长期抑郁(LTD)等突触塑性休闲形式是基本的学习和记忆的基本蜂窝机制。突触标记和捕获(STC)假设提供了关于活性依赖性基因的产品的理论框架可以与增强的突触相互作用以促进和维持这种长持久的突触可塑性。尽管最初假设ARC / ARG3.1在LTP期间参与STC过程,但累积证据表明ARC / ARG3.1可能宁可导致突触权衡的削弱而不是其强化。特别地,在可塑性诱导刺激之后,在树枝状蛋白的弧/ arg3.1蛋白动力学和功能分析揭示了突触权重的新类型的不活动依赖性再分布,称为“反突触标记”。原始突触标记和反向突触标记可能共存并且是相互非排他性的机制,它们在一起可以帮助协调突触权重的再分配,并促进在后期期间增强和非调强突触之间的增强和维持其对比度长期突触可塑性。在该综述中,我们描述了控制Arc / Arg3.1的突触动态的逆突触标记机制,即立即早期基因产物被捕获并优先针对非调强突触,并讨论其对神经元电路改进和认知功能的影响。 (c)2017 Elsevier Ltd.保留所有权利。

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