首页> 美国卫生研究院文献>The Journal of Neuroscience >Persistent Associative Plasticity at an Identified Synapse Underlying Classical Conditioning Becomes Labile with Short-Term Homosynaptic Activation
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Persistent Associative Plasticity at an Identified Synapse Underlying Classical Conditioning Becomes Labile with Short-Term Homosynaptic Activation

机译:在经典条件下的已识别突触上的持久关联可塑性变得不稳定具有短期同态突触激活。

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摘要

Synapses express different forms of plasticity that contribute to different forms of memory, and both memory and plasticity can become labile after reactivation. We previously reported that a persistent form of nonassociative long-term facilitation (PNA-LTF) of the sensorimotor synapses in Aplysia californica, a cellular analog of long-term sensitization, became labile with short-term heterosynaptic reactivation and reversed when the reactivation was followed by incubation with the protein synthesis inhibitor rapamycin. Here we examined the reciprocal impact of different forms of short-term plasticity (reactivations) on a persistent form of associative long-term facilitation (PA-LTF), a cellular analog of classical conditioning, which was expressed at Aplysia sensorimotor synapses when a tetanic stimulation of the sensory neurons was paired with a brief application of serotonin on 2 consecutive days. The expression of short-term homosynaptic plasticity [post-tetanic potentiation or homosynaptic depression (HSD)], or short-term heterosynaptic plasticity [serotonin-induced facilitation or neuropeptide Phe-Met-Arg-Phe-NH2 (FMRFa)-induced depression], at synapses expressing PA-LTF did not affect the maintenance of PA-LTF. The kinetics of HSD was attenuated at synapses expressing PA-LTF, which required activation of protein kinase C (PKC). Both PA-LTF and the attenuated kinetics of HSD were reversed by either a transient blockade of PKC activity or a homosynaptic, but not heterosynaptic, reactivation when paired with rapamycin. These results indicate that two different forms of persistent synaptic plasticity, PA-LTF and PNA-LTF, expressed at the same synapse become labile when reactivated by different stimuli.>SIGNIFICANCE STATEMENT Activity-dependent changes in neural circuits mediate long-term memories. Some forms of long-term memories become labile and can be reversed with specific types of reactivations, but the mechanism is complex. At the cellular level, reactivations that induce a reversal of memory must evoke changes in neural circuits underlying the memory. What types of reactivations induce a labile state at neural connections that lead to reversal of different types of memory? We find that a critical neural connection in Aplysia, which is modified with different stimuli that mediate different types of memory, becomes labile with different types of reactivations. These results provide insights for developing strategies in alleviating maladaptive memories accompanying anxiety disorders.
机译:突触表达不同形式的可塑性,从而导致不同形式的记忆,并且记忆和可塑性在重新激活后都会变得不稳定。我们先前曾报道,海螺,一种长期敏感的细胞类似物,感觉运动突触的持续形式的非关联性长期促进(PNA-LTF),随着短期的异突触再激活而变得不稳定,并在随后的重新激活时逆转通过与蛋白质合成抑制剂雷帕霉素一起孵育。在这里,我们研究了不同形式的短期可塑性(激活)对持久性联合长期促进(PA-LTF)(经典调节的细胞类似物)的持久性形式的相互影响,该运动类似物在强直性先天性时在Aplysia感觉运动突触中表达。连续2天对感觉神经元的刺激与5-羟色胺的短暂应用相结合。短期同态突触可塑性[后强直化或同态突触抑制(HSD)]或短期异质突触可塑性[5-羟色胺诱导的促进或神经肽Phe-Met-Arg-Phe-NH2(FMRFa)诱导的抑郁]的表达在表达PA-LTF的突触中,不影响PA-LTF的维持。 HSD的动力学在表达PA-LTF的突触处减弱,这需要激活蛋白激酶C(PKC)。 PA-LTF和HSD的减毒动力学均通过短暂阻断PKC活性或与雷帕霉素配对时的同突触(而非异突触)重新激活而逆转。这些结果表明,当通过不同的刺激重新激活时,在同一突触中表达的两种不同形式的持续性突触可塑性PA-LTF和PNA-LTF变得不稳定。>重要意义声明长期记忆。某些形式的长期记忆变得不稳定,可以通过特定类型的重新激活来逆转,但是机制很复杂。在细胞水平上,引起记忆逆转的重新激活必须引起记忆基础神经回路的变化。哪些类型的激活在神经连接处引起不稳定状态,从而导致不同类型的记忆发生逆转?我们发现,在Aplysia中,通过介导不同类型记忆的不同刺激进行了修饰的关键神经连接,随着不同类型的激活而变得不稳定。这些结果为减轻焦虑症伴随的适应不良记忆的发展策略提供了见识。

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