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The Arc of cognition: signaling cascades regulating Arc and implications for cognitive function and disease

机译:认知弧:信号级联调节弧及其对认知功能和疾病的影响

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摘要

The activity-regulated cytoskeletal (Arc) gene is implicated in numerous synaptic plasticity paradigms, including long-term potentiation and depression and homeostatic plasticity and is critical for consolidating memory. How Arc facilitates these forms of plasticity is not fully understood. Unlike other neuronal immediate-early genes, Arc encodes a protein that shuttles between the somatodendritic and nuclear compartments to regulate synaptic plasticity. Little attention has been paid to Arc’s role in the nucleus. Here, we highlight the regulatory elements and signaling cascades required to induce Arc transcription and discuss the significance of Arc nuclear localization for synaptic plasticity and scaling. We integrate these findings into the context of cognitive function and disease and propose a model in which Arc mediates an effect on memory as a “chaser” of synaptic activity through homeostatic scaling.
机译:活性调节的细胞骨架(Arc)基因与许多突触可塑性范式有关,包括长期增强和抑制以及体内稳态可塑性,对于巩固记忆至关重要。 Arc如何促进这些形式的可塑性尚不完全清楚。与其他神经元的即早基因不同,Arc编码一种蛋白质,该蛋白质在树突状和核区室之间穿梭,以调节突触可塑性。很少有人关注Arc在原子核中的作用。在这里,我们重点介绍诱导弧转录所需的调控元件和信号级联,并讨论弧核定位对突触可塑性和结垢的重要性。我们将这些发现整合到认知功能和疾病的背景中,并提出了一个模型,其中Arc通过稳态调节介导了对记忆的影响,作为突触活动的“追赶者”。

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