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Profiling the Expression of Endoplasmic Reticulum Stress Associated Heat Shock Proteins in Animal Epilepsy Models

机译:分析动物癫痫模型中内质网应激相关热休克蛋白的表达

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Unfolded protein response is a signaling cascade triggered by misfolded proteins in the endoplasmic reticulum. Heat shock protein H4 (HSPH4) and A5 (HSPA5) are two chaperoning proteins present within the organelle, which target misfolded peptides during prolonged stress conditions. Epileptogenic insults and epileptic seizures are a notable source of stress on cells. To investigate whether they influence expression of these chaperones, we performed immunohistochemical stainings in brains from rats that experienced a status epilepticus (SE) as a trigger of epileptogenesis and from canine epilepsy patients. Quantification of HSPA5 and HSPH4 revealed alterations in hippocampus and parahippocampal cortex. In rats, SE induced up-regulation of HSPA5 in the piriform cortex and down-regulation of HSPA5 and HSPH4 in the hippocampus. Regionally restricted increases in expression of the two proteins has been observed in the chronic phase with spontaneous recurrent seizures. Confocal microscopy revealed a predominant expression of both proteins in neurons, no expression in microglia and circumscribed expression in astroglia. In canine patients, only up-regulation of HSPH4 expression was observed in Cornu Ammonis 1 region in animals diagnosed with structural epilepsy. This characterization of HSPA5 and HSPH4 expression provided extensive information regarding spatial and temporal alterations of the two proteins during SE-induced epileptogenesis and following epilepsy manifestations. Up-regulation of both proteins implies stress exerted on ER during these disease phases. Taken together suggest a differential impact of epileptogenesis on HSPA5 and HSPH4 expression and indicate them as a possible target for pharmacological modulation of unfolded protein response. (C) 2020 The Authors. Published by Elsevier Ltd on behalf of IBRO.
机译:展开的蛋白质响应是由内质网中被错误折叠的蛋白质引发的信号传导级联。热休克蛋白H4(HSPH4)和A5(HSPA5)是在细胞器内存在的两种伴侣蛋白,其在长期应激条件下靶出错配的肽。癫痫发生损伤和癫痫发作是细胞上的显着应激来源。为了调查它们是否影响这些伴侣的表达,我们在经历了癫痫(SE)作为癫痫患者的触发器的大鼠的大脑中的大脑中的免疫组化染色。 HSPA5和HSPH4的定量揭示了海马和PARAHIPPocampal皮质的改变。在大鼠中,SE在海马中诱导HSPA5的HSPA5和下调HSPH4中的下调。在具有自发复发癫痫发作的慢性相中,在慢性相中观察到两种蛋白质表达的区域限制增加。共聚焦显微镜揭示了神经元中的两种蛋白质的主要表达,在头孢菌细胞中没有表达并在十字嘴胶质菌属中均外表达。在犬患者中,仅在诊断患有结构癫痫的动物中的玉米氨氨氨氨氨宫内才观察到HSPH4表达的上调。 HSPA5和HSPH4表达的这种表征提供了关于Se诱导的癫痫发生期间的两种蛋白质的空间和时间改变的广泛信息,并在癫痫表现后的癫痫表现。两种蛋白质的上调意味着在这些疾病阶段期间在ER上施加压力。共同表明癫痫发生对HSPA5和HSPH4表达的差异影响,并表明它们是展开蛋白质反应的药理调节的可能靶标。 (c)2020作者。由elsevier有限公司代表银布发布。

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