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Clusterin interaction with Bcl-x L is associated with seizure-induced neuronal death

机译:Clusterin与Bcl-x L的相互作用与癫痫诱发的神经元死亡有关

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Status epilepticus causes significant damage to the brain, and cellular injury due to prolonged seizures may cause the pathogenesis of epilepsy or cognitive deficits. Clusterin mediates several cell signaling pathways, including cell death or survival pathways in the brain. A nuclear form of clusterin protein has been suggested to have pro-apoptotic properties. Bcl-x L functions as a dominant-negative modulator of the pro-apoptotic protein Bax. However, the relationship between clusterin and Bcl-x L in cell death signaling in the brain remains unknown. Therefore, we examined whether clusterin interacts with Bcl-x L after seizures or whether this interaction is related to neuronal death. We found increased levels of nuclear clusterin and cleaved caspase-3 in CA3 neurons after prolonged seizures induced by systemic kainic acid, along with extensive hippocampal cell death, as evidenced by terminal deoxynucleotidyl transferase-mediated deoxyuridine triphosphate nick-end labeling (TUNEL) and anti-active caspase-3 staining. Furthermore, co-immunoprecipitation and double immunofluorescence analyses revealed that clusterin interacted with Bcl-x L in dying CA3 neurons while the levels of Bcl-x L, Bad or Bax remained constant. These findings provide evidence that nuclear clusterin signals cell death at least via an interaction with Bcl-x L in the hippocampus after seizures, suggesting that targeting nuclear clusterin may be a promising novel strategy to protect against seizure-induced neuronal injury.
机译:癫痫持续状态会严重损害大脑,长期发作引起的细胞损伤可能会导致癫痫或认知功能障碍。簇蛋白介导几种细胞信号传导途径,包括脑中的细胞死亡或存活途径。已经提出核蛋白簇蛋白具有核促凋亡特性。 Bcl-x L充当促凋亡蛋白Bax的显性负调节剂。然而,脑细胞死亡信号中簇蛋白与Bcl-x L之间的关系仍然未知。因此,我们检查了癫痫发作后簇蛋白是否与Bcl-x L相互作用或这种相互作用是否与神经元死亡有关。我们发现,全身性海藻酸引起的癫痫发作长时间导致癫痫发作后,CA3神经元中的核簇蛋白水平和caspase-3断裂,以及海马细胞广泛死亡,这由末端脱氧核苷酸转移酶介导的脱氧尿苷三磷酸缺口末端标记(TUNEL)和抗活性caspase-3染色。此外,共同免疫沉淀和双重免疫荧光分析表明,垂死的CA3神经元中簇蛋白与Bcl-x L相互作用,而Bcl-x L,Bad或Bax的水平保持恒定。这些发现提供了证据,证明核聚集蛋白至少在癫痫发作后通过与海马中的Bcl-x L相互作用来信号传导细胞死亡,这表明靶向核聚集蛋白可能是防止癫痫发作引起的神经元损伤的一种有前途的新策略。

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