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Memory strength gates the involvement of a CREB-dependent cortical fear engram in remote memory

机译:记忆力控制了依赖CREB的皮质恐惧症在远程记忆中的参与

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摘要

Encoding and retrieval of contextual memories is initially mediated by sparsely activated neurons, so-called engram cells, in the hippocampus. Subsequent memory persistence is thought to depend on network-wide changes involving progressive contribution of cortical regions, a process referred to as systems consolidation. Using a viral-based TRAP (targeted recombination in activated populations) approach, we studied whether consolidation of contextual fear memory by neurons in the medial prefrontal cortex (mPFC) is modulated by memory strength and CREB function. We demonstrate that activity of a small subset of mPFC neurons is sufficient and necessary for remote memory expression, but their involvement depends on the strength of conditioning. Furthermore, selective disruption of CREB function in mPFC engram cells after mild conditioning impairs remote memory expression. Together, our data demonstrate that memory consolidation by mPFC engram cells requires CREB-mediated transcription, with the functionality of this network hub being gated by memory strength.
机译:最初由海马中稀疏激活的神经元(即所谓的engram细胞)介导上下文记忆的编码和检索。随后的内存持久性被认为取决于整个网络的变化,这些变化涉及皮层区域的逐步贡献,这一过程称为系统整合。使用基于病毒的TRAP(活化人群中的靶向重组)方法,我们研究了内侧前额叶皮层(mPFC)中神经元对上下文恐惧记忆的巩固是否受记忆强度和CREB功能的调节。我们证明了小部分mPFC神经元的活动对于远程记忆表达是足够的和必要的,但是它们的参与取决于条件的强度。此外,轻度调节后,mPFC印记细胞中CREB功能的选择性破坏会损害远程记忆表达。总之,我们的数据表明,由mPFC枚举细胞进行的内存整合需要CREB介导的转录,而该网络集线器的功能受内存强度的限制。

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