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在星形胶质细胞中定向失活连接蛋白43的小鼠表现出探索行为增加、运动能力受损以及脑内乙酰胆碱水平的变化。

Mice with astrocyte-directed inactivation of connexin43 exhibit increased exploratory behaviour, impaired motor capacities, and changes in brain acetylcholine levels.

作者信息

Frisch Christian, Theis Martin, De Souza Silva Maria A, Dere Ekrem, Söhl Goran, Teubner Barbara, Namestkova Katerina, Willecke Klaus, Huston Joseph P

机构信息

Institute of Physiological Psychology, and Center for Biological and Medical Research, Heinrich Heine-University of Düsseldorf, Universitätsstrasse 1, D-40225 Düsseldorf, Germany.

出版信息

Eur J Neurosci. 2003 Oct;18(8):2313-8. doi: 10.1046/j.1460-9568.2003.02971.x.

Abstract

Gap junctions mediate communication between many cell types in the brain. Gap junction channels are composed of membrane-spanning connexin (Cx) proteins, allowing the cell-to-cell passage of small ions and metabolites. Cx43 is the main constituent of the brain-spanning astrocytic gap junctional network, controlling activity-related changes in ion and glutamate concentrations as well as metabolic processes. In astrocytes, deletion of Cx43-coding DNA led to attenuated gap junctional coupling and impaired propagation of calcium waves, known to influence neuronal activity. Investigation of the role of Cx43 in behaviour has been impossible so far, due to postnatal lethality of its general deletion. Recently, we have shown that deletion of Cx30, which is also expressed by astrocytes, affects exploration, emotionality, and neurochemistry in the mouse. In the present study, we investigated the effects of the astrocyte-directed inactivation of Cx43 on mouse behaviour and brain neurochemistry. Deletion of Cx43 in astrocytes increased exploratory activity without influencing habituation. In the open field, but not in the elevated plus-maze, an anxiolytic-like effect was observed. Rotarod performance was initially impaired, but reached control level after further training. In the water maze, Cx43 deficient mice showed a steeper learning course, although final performance was similar between groups. Cx43 inactivation in astrocytes increased acetylcholine content in the frontal cortex of water maze-trained animals. Results are discussed in terms of altered communication between astrocytes and neurons, possible compensation processes, and differential effects of Cx30- and astrocyte-specific Cx43 deletion.

摘要

缝隙连接介导大脑中多种细胞类型之间的通讯。缝隙连接通道由跨膜连接蛋白(Cx)组成,允许小离子和代谢物在细胞间通过。Cx43是跨越大脑的星形胶质细胞缝隙连接网络的主要成分,控制与活动相关的离子和谷氨酸浓度变化以及代谢过程。在星形胶质细胞中,编码Cx43的DNA缺失导致缝隙连接偶联减弱以及钙波传播受损,而钙波传播已知会影响神经元活动。由于Cx43普遍缺失会导致出生后致死,因此迄今为止,研究Cx43在行为中的作用是不可能的。最近,我们发现同样由星形胶质细胞表达的Cx30缺失会影响小鼠的探索、情绪和神经化学。在本研究中,我们研究了星形胶质细胞定向失活Cx43对小鼠行为和大脑神经化学的影响。星形胶质细胞中Cx43的缺失增加了探索活动,而不影响习惯化。在旷场实验中,但在高架十字迷宫实验中未观察到类似抗焦虑的作用。转棒实验表现最初受损,但经过进一步训练后达到对照水平。在水迷宫实验中,Cx43缺陷小鼠表现出更陡峭的学习过程,尽管各组最终表现相似。星形胶质细胞中Cx43失活增加了水迷宫训练动物额叶皮质中的乙酰胆碱含量。我们从星形胶质细胞与神经元之间通讯改变、可能的补偿过程以及Cx30和星形胶质细胞特异性Cx43缺失的不同影响等方面对结果进行了讨论。

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