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在 iv 小鼠中,海马回路的左右不对称缺陷会损害空间学习和工作记忆。

Left-right asymmetry defect in the hippocampal circuitry impairs spatial learning and working memory in iv mice.

机构信息

Japan Society for the Promotion of Science, Tokyo, Japan.

出版信息

PLoS One. 2010 Nov 17;5(11):e15468. doi: 10.1371/journal.pone.0015468.

Abstract

Although left-right (L-R) asymmetry is a fundamental feature of higher-order brain function, little is known about how asymmetry defects of the brain affect animal behavior. Previously, we identified structural and functional asymmetries in the circuitry of the mouse hippocampus resulting from the asymmetrical distribution of NMDA receptor GluR ε2 (NR2B) subunits. We further examined the ε2 asymmetry in the inversus viscerum (iv) mouse, which has randomized laterality of internal organs, and found that the iv mouse hippocampus exhibits right isomerism (bilateral right-sidedness) in the synaptic distribution of the ε2 subunit, irrespective of the laterality of visceral organs. To investigate the effects of hippocampal laterality defects on higher-order brain functions, we examined the capacity of reference and working memories of iv mice using a dry maze and a delayed nonmatching-to-position (DNMTP) task, respectively. The iv mice improved dry maze performance more slowly than control mice during acquisition, whereas the asymptotic level of performance was similar between the two groups. In the DNMTP task, the iv mice showed poorer accuracy than control mice as the retention interval became longer. These results suggest that the L-R asymmetry of hippocampal circuitry is critical for the acquisition of reference memory and the retention of working memory.

摘要

尽管左右(L-R)不对称是高级脑功能的基本特征,但人们对大脑不对称缺陷如何影响动物行为知之甚少。之前,我们发现了由于 NMDA 受体 GluR ε2(NR2B)亚基的不对称分布而导致的小鼠海马回路的结构和功能不对称。我们进一步研究了内脏反转(iv)小鼠中的 ε2 不对称性,发现无论内脏器官的偏侧性如何,iv 小鼠的海马体在 ε2 亚基的突触分布中表现出右侧同型性(双侧右侧化)。为了研究海马体偏侧性缺陷对高级脑功能的影响,我们使用干迷宫和延迟非匹配位置任务(DNMTP)分别检查了 iv 小鼠的参考记忆和工作记忆能力。在获得过程中,iv 小鼠在干迷宫性能方面的改善速度比对照小鼠慢,而两组的渐近性能水平相似。在 DNMTP 任务中,随着保持间隔的延长,iv 小鼠的准确性比对照小鼠差。这些结果表明,海马回路的 L-R 不对称性对于参考记忆的获得和工作记忆的保留至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e14/2984506/c487a60dfe6d/pone.0015468.g001.jpg

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