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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Mice deficient in collapsin response mediator protein-1 exhibit impaired long-term potentiation and impaired spatial learning and memory.
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Mice deficient in collapsin response mediator protein-1 exhibit impaired long-term potentiation and impaired spatial learning and memory.

机译:缺乏胶原蛋白应答介导蛋白-1的小鼠表现出长期增强能力受损,空间学习和记忆能力受损。

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摘要

Collapsing response mediator protein-1 (CRMP-1) was initially identified in brain and has been implicated in plexin-dependent neuronal function. The high amino acid sequence identity among the five CRMPs has hindered determination of the functions of each individual CRMP. We generated viable and fertile CRMP-1 knock-out (CRMP-1(-/-)) mice with no evidence of gross abnormality in the major organs. CRMP-1(-/-) mice exhibited intense microtubule-associated protein 2 (MAP2) staining in the proximal portion of the dendrites, but reduced and disorganized MAP2 staining in the distal dendrites of hippocampal CA1 pyramidal cells. Immunoreactivity to GAP-43 (growth-associated protein-43) and PSD95 (postsynaptic density-95) (a postsynaptic membrane adherent cytoskeletal protein) was also decreased in the CA1 region of the knock-out mice. These changes were consistent with the mutant mice showing a reduction in long-term potentiation (LTP) in the CA1 region and impaired performance in hippocampal-dependent spatiallearning and memory tests. CRMP-1(-/-) mice showed a normal synapsin I labeling pattern in CA1 and normal paired-pulse facilitation. These findings provide the first evidence suggesting that CRMP-1 may be involved in proper neurite outgrowth in the adult hippocampus and that loss of CRMP-1 may affect LTP maintenance and spatial learning and memory.
机译:最初在大脑中发现了折叠反应介导蛋白1(CRMP-1),并与plexin依赖性神经元功能有关。五个CRMP之间氨基酸序列的高度同一性阻碍了每个CRMP功能的确定。我们生成了可行和可育的CRMP-1基因敲除(CRMP-1(-/-))小鼠,没有证据表明主要器官存在明显异常。 CRMP-1(-/-)小鼠在树突的近端部分表现出强烈的微管相关蛋白2(MAP2)染色,但在海马CA1锥体细胞的远端树突中减少和杂乱无章的MAP2染色。在敲除小鼠的CA1区中,对GAP-43(生长相关蛋白43)和PSD95(突触后密度95)(突触后膜粘附的细胞骨架蛋白)的免疫反应性也降低了。这些变化与突变小鼠在CA1区的长期增强(LTP)降低以及海马依赖性空间学习和记忆测试的功能受损相一致。 CRMP-1(-/-)小鼠在CA1中显示正常的突触素I标记模式,并且具有正常的配对脉冲促进功能。这些发现提供了第一个证据,表明CRMP-1可能参与了成年海马体的适当神经突生长,并且CRMP-1的丧失可能影响LTP的维持和空间学习与记忆。

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