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Seizure-induced neuronal apoptosis is related to dysregulation of the RNA-edited GluR2 subunit in the developing mouse brain

机译:癫痫发作诱导的神经元细胞凋亡与发展中异性小鼠脑中的RNA编辑的Glur2亚基的失衡有关

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摘要

Ca2+-permeable AMPA receptors (AMPAR) which crucially modify maturational programs of the developing brain are involved in seizure-induced glutamate excitotoxicity and apoptosis. Regulatory effects on AMPAR subunit composition and RNA-editing in the developing brain and their significance as therapeutic targets are not well understood. Here, we analyzed acute effects of recurrent pilocarpine-induced neonatal seizures on age- and region-specific expression of AMPAR subunits and adenosine deaminases (ADAR) in the developing mouse brain (P10). After recurrent seizure activity and regeneration periods of 6-72 h cerebral mRNA levels of GluR (glutamate receptor subunit) 1, GluR2, GluR3, and GluR4 were unaffected compared to controls. However, ratio of GluR2 and GluR4 to pooled GluR1-4 mRNA concentration significantly decreased in seizure-exposed brains in comparison to controls. After a regeneration period of 24-72 h ADAR1 and ADAR2 mRNA expression was significantly lower in seizure-exposed brains than in those of controls. This was confirmed at the protein level in the hippocampal CA3 region. We observed a regionally increased apoptosis (TUNEL+ and CC3+ cells) in the hippocampus, parietal cortex and subventricular zone of seizure-exposed brains in comparison to controls.
机译:Ca2 + -Permable AMPA受体(AMPAR)至关重要地修改显影大脑的成熟程序涉及癫痫发作诱导的谷氨酸兴奋毒性和凋亡。在发育大脑中对AMPAR亚基组合物和RNA编辑的调节作用及其作为治疗靶标的意义尚不清楚。在此,我们分析了经常性汲昆宾诱导的新生儿癫痫发作对显影小鼠脑中的AMPAR亚基和腺苷脱氨酶(ADAR)的年龄和区域特异性表达的急性效应。经复制的癫痫发作活性和6-72小时的再生时间为Glur(谷氨酸受体亚基)1,Glur2,Glur3和Glur4与对照相比未受影响。然而,与对照相比,Glur2和Glur4与汇集到GluR1-4 mRNA浓度的比例显着降低。在24-72小时的再生期和ADAR2 mRNA表达中癫痫发作暴露的脑中显着降低,而不是对照组。这在海马CA3区的蛋白质水平上证实了这一点。与对照组相比,我们观察了海马,椎管型皮层和癫痫发作大脑的闭合区域中的凋亡(TuneL +和CC3 +细胞)。

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