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Mice with deficient BK channel function show impaired prepulse inhibition and spatial learning, but normal working and spatial reference memory

机译:BK通道功能不足的小鼠表现出减弱的预脉冲抑制和空间学习,但正常的工作和空间参考记忆

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摘要

Genetic variations in the large-conductance, voltage- and calcium activated potassium channels (BK channels) have been recently implicated in mental retardation, autism and schizophrenia which all come along with severe cognitive impairments. In the present study we investigate the effects of functional BK channel deletion on cognition using a genetic mouse model with a knock-out of the gene for the pore forming α-subunit of the channel. We tested the F1 generation of a hybrid SV129/C57BL6 mouse line in which the slo1 gene was deleted in both parent strains.We first evaluated hearing and motor function to establish the suitability of this model for cognitive testing. Auditory brain stem responses to click stimuli showed no threshold differences between knockout mice and their wild-type littermates. Despite of muscular tremor, reduced grip force, and impaired gait, knockout mice exhibited normal locomotion. These findings allowed for testing of sensorimotor gating using the acoustic startle reflex, as well as of working memory, spatial learning and memory in the Y-maze and the Morris water maze, respectively.Prepulse inhibition on the first day of testing was normal, but the knockout mice did not improve over the days of testing as their wild-type littermates did. Spontaneous alternation in the y-maze was normal as well, suggesting that the BK channel knock-out does not impair working memory. In the Morris water maze knock-out mice showed significantly slower acquisition of the task, but normal memory once the task was learned. Thus, we propose a crucial role of the BK channels in learning, but not in memory storage or recollection.
机译:大电导,电压和钙激活钾通道(BK通道)的遗传变异最近与智力低下,自闭症和精神分裂症有关,所有这些都伴随着严重的认知障碍。在本研究中,我们使用基因小鼠模型研究了功能性BK通道缺失对认知的影响,该模型具有敲除该通道的孔形成亚基的基因。我们测试了F1代杂种SV129 / C57BL6小鼠品系的F1代,其中两个亲本品系中都删除了slo1基因。我们首先评估了听力和运动功能,以建立该模型对认知测试的适用性。听觉脑干对点击刺激的反应显示敲除小鼠与其野生型同窝仔之间没有阈值差异。尽管出现肌肉震颤,握力降低和步态受损,但基因敲除小鼠仍表现出正常的运动能力。这些发现可用于通过声惊吓反射来测试感觉运动门控,以及分别在Y迷宫和莫里斯水迷宫中进行工作记忆,空间学习和记忆的测试。在测试的第一天,预脉冲抑制是正常的,但是在测试的当天,基因敲除小鼠并没有像野生型同窝仔一样改善。 y迷宫中的自发交替也是正常的,这表明BK通道敲除不会损害工作记忆。在莫里斯水迷宫中,剔除小鼠显示出任务的采集速度显着降低,但是一旦学会了任务,记忆就会正常。因此,我们提出了BK通道在学习中的关键作用,而不是在存储器的存储或记忆中的关键作用。

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