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Fear and safety learning differentially affect synapse size and dendritic translation in the lateral amygdala

机译:恐惧和安全学习差异影响杏仁核外侧突触的大小和树突状翻译。

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摘要

Fear learning is associated with changes in synapse strength in the lateral amygdala (LA). To examine changes in LA dendritic spine structure with learning, we used serial electron microscopy to re-construct dendrites after either fear or safety conditioning. The spine apparatus, a smooth endoplasmic reticulum (sER) specialization found in very large spines, appeared more frequently after fear conditioning. Fear conditioning was associated with larger synapses on spines that did not contain a spine apparatus, whereas safety conditioning resulted in smaller synapses on these spines. Synapses on spines with a spine apparatus were smaller after safety conditioning but unchanged with fear conditioning, suggesting a ceiling effect. There were more polyribosomes and multivesicular bodies throughout the dendrites from fear conditioned rats, indicating increases in both protein synthesis and degradation. Polyribosomes were associated with the spine apparatus under both training conditions. We conclude that LA synapse size changes bidirectionally with learning and that the spine apparatus has a central role in regulating synapse size and local translation.
机译:恐惧学习与外侧杏仁核(LA)突触强度的变化有关。为了通过学习检查LA树突状脊柱结构的变化,我们在恐惧或安全条件调节后使用串行电子显微镜重建树突。脊柱装置是在非常大的棘中发现的平滑内质网(sER)特化,在恐惧适应后出现频率更高。恐惧调节与不包含脊柱器械的棘突较大有关,而安全调节导致这些棘突较小。在进行安全性调节后,使用脊柱器械的脊柱突触较小,但在进行恐惧性调节时,突触没有变化,表明存在天花板效应。恐惧条件大鼠的整个树突中有更多的多核糖体和多囊泡体,表明蛋白质合成和降解均增加。在两种训练条件下,多核糖体均与脊柱器械相关。我们得出的结论是,LA突触大小随学习而双向变化,并且脊柱器械在调节突触大小和局部翻译中起着核心作用。

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