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Cellular and systems mechanisms of memory strength as a constraint on auditory fear reconsolidation.

机译:细胞和系统的记忆力机制作为听觉恐惧再巩固的约束。

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Memory reconsolidation has been demonstrated in various tasks and species, suggesting it is a fundamental process. However, there are experimental parameters that can inhibit reconsolidation from occurring (boundary conditions). These conditions and their mechanisms remain poorly defined. Here, we characterize the ability of strong training to inhibit reconsolidation at the behavioral, systems and molecular levels. We demonstrate that strong memories in rats initially are resistant to reconsolidation, but after sufficient time will undergo reconsolidation, suggesting that boundary conditions can be transient. At the systems level, we show that the hippocampus is necessary for inhibiting reconsolidation in the amygdala. At the molecular level, we demonstrate that NR2B NMDA-receptor subunits which are critical for the induction of reconsolidation of auditory memories in the amygdala, are downregulated only under conditions when strong memories do not undergo reconsolidation. This suggests that one molecular mechanism for mediating boundary conditions is through downregulation of reconsolidation induction mechanisms.
机译:记忆重整已在各种任务和物种中得到证明,表明这是一个基本过程。但是,有一些实验参数可以抑制重新合并的发生(边界条件)。这些条件及其机制仍然定义不清。在这里,我们描述了在行为,系统和分子水平上强力训练抑制再整合的能力。我们证明,最初在大鼠中的强大记忆力对再巩固具有抵抗力,但是在足够的时间后将经历再巩固,这表明边界条件可能是暂时的。在系统水平上,我们表明海马是抑制杏仁核中再巩固所必需的。在分子水平上,我们证明了对于杏仁核中听觉记忆的重新整合至关重要的NR2B NMDA受体亚基,仅在强记忆不进行重新整合的条件下才被下调。这表明介导边界条件的一种分子机制是通过下调再整合诱导机制。

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