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恐惧条件作用下调海马体中miR-138的表达,以促进恐惧记忆的形成。

Fear conditioning downregulates miR-138 expression in the hippocampus to facilitate the formation of fear memory.

作者信息

Li Da-Wei, Liu Jin-Zhi, Li Shu-Chen, Yang Jin-Bin, Sun Huan-Huan, Wang Ai-Hua

机构信息

Department of Neurology, Qianfoshan Hospital of Shandong Province, Shandong University, Jinan.

Department of Neurology, The People's Hospital of Xintai, Xintai, Shandong Province, China.

出版信息

Neuroreport. 2018 Nov 7;29(16):1418-1424. doi: 10.1097/WNR.0000000000001129.

DOI:10.1097/WNR.0000000000001129
PMID:30199441
Abstract

Fear memory is important for the survival of animals and is associated with certain anxiety disorders, such as posttraumatic stress disorder. A thorough understanding of the molecular mechanisms of fear memory, especially associative fear memory, is imperative. MicroRNA-138 (miR-138) is a widely distributed microRNA in the brain and is locally enriched at synaptic sites. The role of miR-138 in the formation of fear memory is still largely unknown. In this study, a contextual fear conditioning (CFC) paradigm, bioinformatic methods, a luciferase assay, real-time PCR and western blot were used to evaluate the detailed effects of miR-138 on fear memory. We found that miR-138 transiently decreased in the dorsal hippocampus (DH) after CFC training. Upregulation or downregulation of miR-138 in the DH with miR-138 agomir or antagomir treatment significantly impaired or enhanced the formation of CFC memory, respectively. Moreover, the effects of miR-138 in the DH on the formation of CFC memory were achieved by changing the expression of the downstream target gene calpain 1 (Capn1). Taken together, both the in-vitro evidence and the in-vivo evidence presented in this study support the involvement of miR-138 in CFC memory formation, at least partly via the regulation of Capn1-mediated synaptic plasticity changes. Therapeutic use of miR-138/Capn1 is promising as an alternative option in the treatment of fear memory-related anxiety disorders.

摘要

恐惧记忆对动物的生存至关重要,且与某些焦虑症相关,如创伤后应激障碍。全面了解恐惧记忆的分子机制,尤其是关联性恐惧记忆的分子机制势在必行。微小RNA-138(miR-138)是一种在大脑中广泛分布的微小RNA,在突触部位局部富集。miR-138在恐惧记忆形成中的作用仍 largely未知。在本研究中,采用情境恐惧条件反射(CFC)范式、生物信息学方法、荧光素酶测定、实时PCR和蛋白质印迹法来评估miR-138对恐惧记忆的详细影响。我们发现,CFC训练后,背侧海马体(DH)中的miR-138短暂减少。用miR-138激动剂或拮抗剂处理DH中miR-138的上调或下调分别显著损害或增强了CFC记忆的形成。此外,DH中miR-138对CFC记忆形成的影响是通过改变下游靶基因钙蛋白酶1(Capn1)的表达来实现的。综上所述,本研究中提供的体外证据和体内证据均支持miR-138参与CFC记忆形成,至少部分是通过调节Capn1介导的突触可塑性变化。miR-138/Capn1的治疗应用有望成为治疗与恐惧记忆相关的焦虑症的另一种选择。

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