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慢性点燃大鼠海马突触体中7S SNARE复合体的积累。

Accumulation of 7S SNARE complexes in hippocampal synaptosomes from chronically kindled rats.

作者信息

Matveeva E A, Whiteheart S W, Slevin J T

机构信息

Department of Molecular and Cellular Biochemistry, University of Kentucky Medical Center, Lexington, Kentucky, USA.

出版信息

J Neurochem. 2003 Feb;84(3):621-4. doi: 10.1046/j.1471-4159.2003.01589.x.

Abstract

Kindling is a model of complex partial epilepsy wherein periodic application of an initially subconvulsive stimulus leads to first limbic and then generalized tonic-clonic seizures. Several laboratories have reported that augmented neurotransmitter release of l-glutamate is associated with the chronically kindled state. Neurotransmitter release requires membrane proteins called SNAREs, which form transmembrane complexes that participate in vesicle docking and are required for membrane fusion. We show here that kindling by entorhinal stimulation is associated with an accumulation of 7S SNARE complexes in the ipsilateral hippocampus. This increase of 7S SNARE complexes appears to begin early in the kindling process, achieves a peak with full kindling, and remains at this level for at least a month following cessation of further kindling stimuli. The increase is focal and permanently limited to the ipsilateral hippocampus despite progression to generalized electrographic and behavioral seizures. It is not seen in animals that receive electroconvulsive seizures, suggesting it is related to the kindling process itself. The duration and focality of increased 7S SNARE complexes with entorhinal kindling suggest that this is an altered molecular process associated with epileptogenesis.

摘要

点燃效应是一种复杂部分性癫痫的模型,其中最初给予亚惊厥刺激并周期性施加,会先引发边缘系统发作,随后导致全身性强直阵挛发作。多个实验室报告称,L-谷氨酸神经递质释放增加与慢性点燃状态有关。神经递质释放需要名为SNAREs的膜蛋白,它们形成跨膜复合物,参与囊泡对接,是膜融合所必需的。我们在此表明,通过内嗅皮层刺激引发的点燃效应与同侧海马体中7S SNARE复合物的积累有关。7S SNARE复合物的这种增加似乎在点燃过程早期就开始了,在完全点燃时达到峰值,并在停止进一步的点燃刺激后至少一个月保持在这个水平。尽管已经发展为全身性脑电图和行为发作,但这种增加是局部性的,并且永久局限于同侧海马体。在接受电惊厥发作的动物中未观察到这种情况,这表明它与点燃过程本身有关。7S SNARE复合物随着内嗅皮层点燃效应而增加的持续时间和局部性表明,这是一个与癫痫发生相关的分子过程改变。

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