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囊泡乙酰胆碱转运体表达降低导致小鼠学习缺陷。

Reduced expression of the vesicular acetylcholine transporter causes learning deficits in mice.

作者信息

de Castro B M, Pereira G S, Magalhães V, Rossato J I, De Jaeger X, Martins-Silva C, Leles B, Lima P, Gomez M V, Gainetdinov R R, Caron M G, Izquierdo I, Cammarota M, Prado V F, Prado M A M

机构信息

Program in Molecular Pharmacology, ICB and Núcleo de Neurociências, Departamento de Fisiologia e Biofísica, Universidade Federal de Minas Gerais, Belo Horizonte, MG, Brazil.

出版信息

Genes Brain Behav. 2009 Feb;8(1):23-35. doi: 10.1111/j.1601-183X.2008.00439.x. Epub 2008 Sep 6.

Abstract

Storage of acetylcholine in synaptic vesicles plays a key role in maintaining cholinergic function. Here we used mice with a targeted mutation in the vesicular acetylcholine transporter (VAChT) gene that reduces transporter expression by 40% to investigate cognitive processing under conditions of VAChT deficiency. Motor skill learning in the rotarod revealed that VAChT mutant mice were slower to learn this task, but once they reached maximum performance they were indistinguishable from wild-type mice. Interestingly, motor skill performance maintenance after 10 days was unaffected in these mutant mice. We also tested whether reduced VAChT levels affected learning in an object recognition memory task. We found that VAChT mutant mice presented a deficit in memory encoding necessary for the temporal order version of the object recognition memory, but showed no alteration in spatial working memory, or spatial memory in general when tested in the Morris water maze test. The memory deficit in object recognition memory observed in VAChT mutant mice could be reversed by cholinesterase inhibitors, suggesting that learning deficits caused by reduced VAChT expression can be ameliorated by restoring ACh levels in the synapse. These data indicate an important role for cholinergic tone in motor learning and object recognition memory.

摘要

乙酰胆碱储存在突触小泡中对维持胆碱能功能起着关键作用。在此,我们使用了囊泡乙酰胆碱转运体(VAChT)基因发生靶向突变的小鼠,该突变使转运体表达降低40%,以研究VAChT缺乏条件下的认知加工过程。转棒实验中的运动技能学习表明,VAChT突变小鼠学习该任务的速度较慢,但一旦达到最佳表现,它们与野生型小鼠并无差异。有趣的是,这些突变小鼠在10天后的运动技能表现维持不受影响。我们还测试了VAChT水平降低是否会影响物体识别记忆任务中的学习。我们发现,VAChT突变小鼠在物体识别记忆的时间顺序版本所需的记忆编码方面存在缺陷,但在莫里斯水迷宫测试中,其空间工作记忆或总体空间记忆没有改变。VAChT突变小鼠中观察到的物体识别记忆缺陷可被胆碱酯酶抑制剂逆转,这表明通过恢复突触中的乙酰胆碱水平,可以改善由VAChT表达降低引起的学习缺陷。这些数据表明胆碱能张力在运动学习和物体识别记忆中起重要作用。

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