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连接蛋白30基因缺陷型小鼠表现出情绪反应增强、旷场实验中竖毛活动减少以及神经化学变化。

Connexin30-deficient mice show increased emotionality and decreased rearing activity in the open-field along with neurochemical changes.

作者信息

Dere E, De Souza-Silva M A, Frisch C, Teubner B, Söhl G, Willecke K, Huston J P

机构信息

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

出版信息

Eur J Neurosci. 2003 Aug;18(3):629-38. doi: 10.1046/j.1460-9568.2003.02784.x.

Abstract

Gap-junction channels in the brain, formed by connexin (Cx) proteins with a distinct regional/cell-type distribution, allow intercellular electrical and metabolic communication. In astrocytes, mainly the connexins 43, 26 and 30 are expressed. In addition, connexin30 is expressed in ependymal and leptomeningeal cells, as well as in skin and cochlea. The functional implications of the astrocytic gap-junctional network are not well understood and evidence regarding their behavioural relevance is lacking. Thus, we have tested groups of Cx30-/-, Cx30+/-, and Cx30+/+ mice in the open-field, an object exploration task, in the graded anxiety test and on the rotarod. The Cx30-/- mice showed reduced exploratory activity in terms of rearings but not locomotion in the open-field and object exploration task. Furthermore, Cx30-/- mice exhibited anxiogenic behaviour as shown by higher open-field centre avoidance and corner preference. Graded anxiety test and rotarod performance was similar across groups. The Cx30-/- mice had elevated choline levels in the ventral striatum, possibly related to their aberrant behavioural phenotypes. The Cx30+/- mice had lower dopamine and metabolite levels in the amygdala and ventral striatum and lower hippocampal 5-hydroxyindole acid (5-HIAA) concentrations relative to Cx30+/+ mice. Furthermore, the Cx30+/- mice had lower acetylcholine concentrations in the ventral striatum and higher choline levels in the neostriatum, relative to Cx30+/+ mice. Our data suggest that the elimination of connexin30 can alter the reactivity to novel environments, pointing to the importance of gap-junctional signalling in behavioural processes.

摘要

大脑中的缝隙连接通道由具有独特区域/细胞类型分布的连接蛋白(Cx)形成,可实现细胞间的电和代谢通讯。在星形胶质细胞中,主要表达连接蛋白43、26和30。此外,连接蛋白30在室管膜细胞和软脑膜细胞以及皮肤和耳蜗中表达。星形胶质细胞缝隙连接网络的功能意义尚未完全了解,且缺乏关于其行为相关性的证据。因此,我们在旷场实验、物体探索任务、分级焦虑测试和转棒实验中对Cx30-/-、Cx30+/-和Cx30+/+小鼠组进行了测试。Cx30-/-小鼠在旷场和物体探索任务中的竖毛行为所代表的探索活动减少,但运动不受影响。此外,Cx30-/-小鼠表现出焦虑行为,表现为对旷场中心的回避增加和对角落的偏好。分级焦虑测试和转棒实验的表现各组相似。Cx30-/-小鼠腹侧纹状体中的胆碱水平升高,这可能与其异常的行为表型有关。相对于Cx30+/+小鼠,Cx30+/-小鼠杏仁核和腹侧纹状体中的多巴胺及其代谢物水平较低,海马中的5-羟色胺酸(5-HIAA)浓度也较低。此外,相对于Cx30+/+小鼠,Cx30+/-小鼠腹侧纹状体中的乙酰胆碱浓度较低,新纹状体中的胆碱水平较高。我们的数据表明,连接蛋白30的缺失会改变对新环境的反应性,这表明缝隙连接信号在行为过程中具有重要性。

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