Ratigan Heather C, Krishnan Seetha, Smith Shai, Sheffield Mark E J
Department of Neurobiology, University of Chicago, Chicago, IL 60615, USA.
Doctoral Program in Neurobiology, University of Chicago, Chicago, IL 60615, USA.
bioRxiv. 2023 Mar 27:2023.03.27.534420. doi: 10.1101/2023.03.27.534420.
Memory retrieval of fearful experiences is essential for survival but can be maladaptive if not appropriately suppressed. Fear memories can be acquired through contextual fear conditioning (CFC) which relies on the hippocampus. The thalamic subregion Nucleus Reuniens (NR) is necessary for contextual fear extinction and strongly projects to hippocampal subregion CA1. However, the NR-CA1 pathway has not been investigated during behavior, leaving unknown its role in contextual fear memory retrieval. We implement a novel head-restrained virtual reality CFC paradigm and show that inactivation of the NR-CA1 pathway prolongs fearful freezing epochs, induces fear generalization, and delays extinction. We use sub-cellular imaging to specifically record NR-axons innervating CA1 before and after CFC. We find NR-axons become selectively tuned to freezing only after CFC, and this activity is well-predicted by an encoding model. We conclude that the NR-CA1 pathway actively suppresses fear responses by disrupting ongoing hippocampal-dependent contextual fear memory retrieval.
恐惧经历的记忆提取对生存至关重要,但如果不能得到适当抑制则可能产生适应不良。恐惧记忆可通过依赖海马体的情境恐惧条件反射(CFC)来形成。丘脑亚区 reuniens 核(NR)对于情境恐惧消退是必需的,并且强烈投射到海马体亚区 CA1。然而,在行为过程中尚未对 NR-CA1 通路进行研究,其在情境恐惧记忆提取中的作用尚不清楚。我们实施了一种新型的头部固定虚拟现实 CFC 范式,并表明 NR-CA1 通路的失活会延长恐惧僵立时间、诱发恐惧泛化并延迟消退。我们使用亚细胞成像技术在 CFC 前后特异性记录支配 CA1 的 NR 轴突。我们发现 NR 轴突仅在 CFC 后才选择性地对僵立进行调谐,并且这种活动可以通过编码模型得到很好的预测。我们得出结论,NR-CA1 通路通过破坏正在进行的依赖海马体的情境恐惧记忆提取来积极抑制恐惧反应。