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狂犬病病毒糖蛋白通过 PDZ 结合基序增强空间记忆。

Rabies virus glycoprotein enhances spatial memory via the PDZ binding motif.

机构信息

Department of Physiology and Pharmacology, Pasteur Institute of Iran, Tehran, Iran.

Institut Pasteur, Unité de Neuroimmunologie Virale, UMR 3569, CNRS, Paris, France.

出版信息

J Neurovirol. 2021 Jun;27(3):434-443. doi: 10.1007/s13365-021-00972-2. Epub 2021 Mar 31.

Abstract

Rabies is a life-threatening viral infection of the brain. Rabies virus (RABV) merely infects excitable cells including neurons provoking drastic behaviors including negative emotional memories. RABV glycoprotein (RVG) plays a critical role in RABV pathogenesis. RVG interacts with various cytoplasmic PDZ (PSD-95/Dlg/ZO-1) containing proteins through its PDZ binding motif (PBM). PTZ domains have crucial role in formation and function of signal transduction. Hippocampus is one of the cerebral regions that contain high load of viral antigens. We examined impact of RVG expression in the dorsal hippocampus on aversive as well as spatial learning and memory performance in rats. Two microliter of the lentiviral vector (~10 T.U./ml) encoding RVG or ∆RVG (deleted PBM) genomes was microinjected into the hippocampal CA1. After 1 week, rat's brain was cross-sectioned and RVG/∆RVG-expressing neuronal cells were confirmed by fluorescent microscopy. Passive avoidance and spatial learning and memory were assessed in rats by Shuttle box and Morris water maze (MWM). In the shuttle box, both RVG and ∆RVG decreased the time spent in the dark compartment compared to control (p < 0.05). In MWM, RVG and ∆RVG did not affect the acquisition of spatial task. In the probe test, RVG-expressing rats spent more time in the target quadrant, and also reached the platform position sooner than control group (p < 0.05). Rats expressing ∆RVG significantly swam farther from the hidden platform than RVG group (p < 0.05). Our data indicate RVG expression in the hippocampus strengthens aversive and spatial learning and memory performance. The boosting effect on spatial but not avoidance memory is mediated through PBM.

摘要

狂犬病是一种危及生命的病毒感染大脑。狂犬病病毒(RABV)仅感染包括神经元在内的易兴奋细胞,引发包括负性情绪记忆在内的剧烈行为。RABV 糖蛋白(RVG)在 RABV 发病机制中起着关键作用。RVG 通过其 PDZ 结合基序(PBM)与各种含有 PDZ(PSD-95/Dlg/ZO-1)的细胞质蛋白相互作用。PTZ 结构域在信号转导的形成和功能中起着至关重要的作用。海马体是包含高病毒抗原负荷的大脑区域之一。我们研究了 RVG 在背侧海马体中的表达对大鼠厌恶以及空间学习和记忆表现的影响。将编码 RVG 或 ∆RVG(缺失 PBM)基因组的慢病毒载体(~10 T.U./ml)的 2 微升注入海马体 CA1 中。1 周后,通过荧光显微镜确认 RVG/∆RVG 表达神经元细胞。通过穿梭箱和 Morris 水迷宫(MWM)评估大鼠的被动回避和空间学习记忆。在穿梭箱中,RVG 和 ∆RVG 均比对照组(p < 0.05)减少在黑暗隔间中花费的时间。在 MWM 中,RVG 和 ∆RVG 不影响空间任务的获得。在探针测试中,表达 RVG 的大鼠在目标象限中花费的时间更多,并且比对照组更早到达平台位置(p < 0.05)。表达 ∆RVG 的大鼠比 RVG 组明显从隐藏平台游得更远(p < 0.05)。我们的数据表明,海马体中 RVG 的表达增强了厌恶和空间学习记忆表现。对空间但不是回避记忆的增强作用是通过 PBM 介导的。

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