腺苷激酶(ADK)转基因小鼠癫痫发生中星形胶质细胞形成的解偶联。

Neuron glia biology Pub Date : 2008-05-01 Epub Date: 2009-08-13 DOI:10.1017/S1740925X09990135
Tianfu Li, Jing-Quan Lan, Detlev Boison
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引用次数: 49

摘要

星形细胞酶腺苷激酶(ADK)是脑内源性抗惊厥腺苷的关键负调节因子。星形胶质细胞增生伴随ADK的上调是致痫级联反应的一部分,并有助于癫痫发作的产生。为了从分子上解剖星形胶质细胞形成和adk表达在癫痫发作中各自的作用,我们使用了一种转基因方法来解除星形胶质细胞形成中adk的表达:在Adk-tg小鼠中,内源性adk基因被删除,取而代之的是一个在锥体神经元中普遍表达的adk转基因基因,该基因具有新的异位表达,导致自发性癫痫发作。在这里,我们采用了一种独特的方法来选择性地损伤这些Adk-tg小鼠的CA3。使用这种策略,我们有机会在缺乏内源性星形胶质细胞adk基因的情况下研究星形胶质细胞形成和癫痫发生。在触发癫痫发生后,我们发现星形胶质细胞形成没有上调ADK,但没有癫痫发作,而匹配的野生型动物出现星形胶质细胞形成,ADK上调,自发复发癫痫发作。通过从星形胶质细胞形成中解耦ADK表达,我们证明了ADK的全局表达水平而不是星形胶质细胞形成本身导致了癫痫发作。
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Uncoupling of astrogliosis from epileptogenesis in adenosine kinase (ADK) transgenic mice.

The astrocytic enzyme adenosine kinase (ADK) is a key negative regulator of the brain's endogenous anticonvulsant adenosine. Astrogliosis with concomitant upregulation of ADK is part of the epileptogenic cascade and contributes to seizure generation. To molecularly dissect the respective roles of astrogliosis and ADK-expression for seizure generation, we used a transgenic approach to uncouple ADK-expression from astrogliosis: in Adk-tg mice the endogenous Adk-gene was deleted and replaced by a ubiquitously expressed Adk-transgene with novel ectopic expression in pyramidal neurons, resulting in spontaneous seizures. Here, we followed a unique approach to selectively injure the CA3 of these Adk-tg mice. Using this strategy, we had the opportunity to study astrogliosis and epileptogenesis in the absence of the endogenous astrocytic Adk-gene. After triggering epileptogenesis we demonstrate astrogliosis without upregulation of ADK, but lack of seizures, whereas matching wild-type animals developed astrogliosis with upregulation of ADK and spontaneous recurrent seizures. By uncoupling ADK-expression from astrogliosis, we demonstrate that global expression levels of ADK rather than astrogliosis per se contribute to seizure generation.

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Neuron glia biology
Neuron glia biology 医学-神经科学
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