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The tail-elicited tail withdrawal reflex of Aplysia is mediated centrally at tail sensory-motor synapses and exhibits sensitization across multiple temporal domains

机译:Aplysia的尾巴引起的尾巴缩回反射在尾巴感觉运动突触中集中介导,并在多个时域内表现出敏化作用

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摘要

The defensive withdrawal reflexes of Aplysia californica have provided powerful behavioral systems for studying the cellular and molecular basis of memory formation. Among these reflexes the tail-elicited tail withdrawal reflex (T-TWR) has been especially useful. In vitro studies examining the monosynaptic circuit for the T-TWR, the tail sensory-motor (SN-MN) synapses, have identified the induction requirements and molecular basis of different temporal phases of synaptic facilitation that underlie sensitization in this system. They have also permitted more recent studies elucidating the role of synaptic and nuclear signaling during synaptic facilitation. Here we report the development of a novel, compartmentalized semi-intact T-TWR preparation that allows examination of the unique contributions of processing in the SN somatic compartment (the pleural ganglion) and the SN-MN synaptic compartment (the pedal ganglion) during the induction of sensitization. Using this preparation we find that the T-TWR is mediated entirely by central connections in the synaptic compartment. Moreover, the reflex is stably expressed for at least 24 h, and can be modified by tail shocks that induce sensitization across multiple temporal domains, as well as direct application of the modulatory neurotransmitter serotonin. This preparation now provides an experimentally powerful system in which to directly examine the unique and combined roles of synaptic and nuclear signaling in different temporal domains of memory formation.
机译:加州海ly的防御性退缩反射为研究记忆形成的细胞和分子基础提供了强大的行为系统。在这些反射中,引起尾巴的尾巴反射(T-TWR)特别有用。体外研究检查了T-TWR的单突触回路,即尾部感觉运动(SN-MN)突触,已经确定了该系统中敏化的突触促进的不同时间阶段的诱导要求和分子基础。他们还允许最近的研究阐明突触促进过程中突触和核信号的作用。在这里,我们报告了一种新颖的,间隔性的半完整T-TWR制剂的开发,该制剂可以检查SN躯体区室(胸膜神经节)和SN-MN突触区室(踏板神经节)中加工的独特作用。诱导致敏。通过这种准备,我们发现T-TWR完全由突触区室的中央连接介导。此外,该反射至少在24小时内稳定表达,并且可以通过在多个时域引起敏化的尾巴电击以及直接应用调节性神经递质5-羟色胺进行修饰。现在,该准备工作提供了一个实验上强大的系统,可在其中直接检查突触和核信号在记忆形成的不同时域中的独特作用和组合作用。

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