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首页> 外文期刊>Hippocampus >Relaxin-3 Inputs Target Hippocampal Interneurons and Deletion of Hilar Relaxin-3 Receptors in 'Floxed-RXFP3' Mice Impairs Spatial Memory
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Relaxin-3 Inputs Target Hippocampal Interneurons and Deletion of Hilar Relaxin-3 Receptors in 'Floxed-RXFP3' Mice Impairs Spatial Memory

机译:Relaxin-3输入目标海马型互连和“Floxed-RXFP3”小鼠损失的Hilar弛豫素-3受体损失空间记忆

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Hippocampus is innervated by -aminobutyric acid (GABA) projection neurons of the nucleus incertus (NI), including a population expressing the neuropeptide, relaxin-3 (RLN3). In studies aimed at gaining an understanding of the role of RLN3 signaling in hippocampus via its G(i/o)-protein-coupled receptor, RXFP3, we examined the distribution of RLN3-immunoreactive nerve fibres and RXFP3 mRNA-positive neurons in relation to hippocampal GABA neuron populations. RLN3-positive elements were detected in close-apposition with a substantial population of somatostatin (SST)- and GABA-immunoreactive neurons, and a smaller population of parvalbumin- and calretinin-immunoreactive neurons in different hippocampal areas, consistent with the relative distribution patterns of RXFP3 mRNA and these marker transcripts. In light of the functional importance of the dentate gyrus (DG) hilus in learning and memory, and our anatomical data, we examined the possible influence of RLN3/RXFP3 signaling in this region on spatial memory. Using viral-based Cre/LoxP recombination methods and adult mice with a floxed Rxfp3 gene, we deleted Rxfp3 from DG hilar neurons and assessed spatial memory performance and affective behaviors. Following infusions of an AAV((1/2))-Cre-IRES-eGFP vector, Cre expression was observed in DG hilar neurons, including SST-positive cells, and in situ hybridization histochemistry for RXFP3 mRNA confirmed receptor depletion relative to levels in floxed-RXFP3 mice infused with an AAV((1/2))-eGFP (control) vector. RXFP3 depletion within the DG hilus impaired spatial reference memory in an appetitive T-maze task reflected by a reduced percentage of correct choices and increased time to meet criteria, relative to control. In a continuous spontaneous alternation Y-maze task, RXFP3-depleted mice made fewer alternations in the first minute, suggesting impairment of spatial working memory. However, RXFP3-depleted and control mice displayed similar locomotor activity, anxiety-like behavior in light/dark box and elevated-plus maze tests, and learning and long-term memory retention in the Morris water maze. These data indicate endogenous RLN3/RXFP3 signaling can modulate hippocampal-dependent spatial reference and working memory via effects on SST interneurons, and further our knowledge of hippocampal cognitive processing. (c) 2017 Wiley Periodicals, Inc.
机译:海马通过核心(Ni)的aminObuticator(GABA)突出神经元受到支配,包括表达神经肽的群体,弛豫素-3(RLN3)。在研究中,旨在通过其G(I / O)蛋白偶联受体,RXFP3的RLN3信号传导在海马中的作用进行了解,我们检查了RLN3-免疫反应性神经纤维和RXFP3 mRNA阳性神经元的分布海马GABA神经元种群。在近似值中检测到RLN3阳性元素,其具有大量的生长抑素(SST) - 和GABA-免疫反应性神经元,以及不同海马地区的帕瓦蛋白和Caltretinin-ImmuloreActive神经元的较小群体,与相对分布模式一致RxFP3 mRNA和这些标记转录物。鉴于学习和内存中的牙齿回形图(DG)Hilus的功能重要性,以及我们的解剖数据,我们检查了在空间记忆中该区域中RLN3 / RXFP3信令的可能影响。使用基于病毒的CRE / LOXP重组方法和成人小鼠,用氟化的RXFP3基因删除了DG Hilar神经元的RXFP3,并评估了空间记忆性能和情感行为。在AAV((1/2)) - CRE-IRES-EGFP载体的输注后,在DG欧拉伦的神经元中观察到CRE表达,包括SST阳性细胞,以及原位杂交组织化学,用于RXFP3 mRNA确认受体耗尽相对于水平氟化-RXFP3小鼠用AAV((1/2)) - EGFP(控制)矢量。在DG Hilus内的RXFP3耗尽在一个满意的T-MAZE任务中的空间参考记忆中,通过减少的正确选择的百分比和增加时间来达到标准,相对于控制。在持续的自发性交替Y-MAZE任务中,RXFP3耗尽的小鼠在第一分钟中取得了较少的交替,表明空间工作记忆的损害。然而,RXFP3耗尽和对照小鼠在轻/暗盒中显示出类似的运动活动,类似的焦虑行为,并提升了加上迷宫测试,以及在莫里斯水迷宫中的学习和长期记忆保留。这些数据表明内源性RLN3 / RXFP3信号传导可以通过对SST Interneurons的影响来调节海马依赖的空间参考和工作记忆,并进一步了解了海马认知处理的知识。 (c)2017 Wiley期刊,Inc。

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