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Excitotoxicity induced by kainic acid provokes glycogen synthase kinase-3 truncation in the hippocampus

机译:海藻酸诱导的兴奋性毒性引起海马糖原合酶激酶3的截断

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摘要

© 2015 Elsevier B.V. In neuronal cultures, glycogen synthase kinase 3(GSK3) is truncated at the N-terminal end by calpain downstream of activated glutamate receptors. However, the in vivo biological significance of that truncation has not been explored. In an attempt to elucidate if GSK3 truncation has a pathophysiological relevance, we have used intraperitoneal injections of kainic acid (KA) in rats and intra-amygdala KA microinjections in mice as in vivo models of excitotoxicity. Spectrin cleavage analyzed by immunohistochemistry was observed in the CA1 hippocampal field in KA-intraperitoneal treated rats while the CA3 region was the hippocampal area affected after intra-amygdala KA microinjections. GSK3β immunofluorescence did not colocalize with truncated spectrin in both treatments using an antibody that recognize the N-terminal end of GSK3β. Thus, those neurons which are spectrin-positive do not show GSK3β immunolabelling. To study GSK3β truncation in vitro, we exposed organotypic hippocampal slices and cultured cortical neurons to KA leading to the truncation of GSK3 and we found that truncation was blocked by the calpain inhibitor calpeptin. These data suggest a relationship between N-terminal GSK3β truncation and excitotoxicity. Overall, our data reinforces the important relationship between glutamate receptors and GSK3 and their role in neurodegenerative processes in which excitotoxicity is involved.
机译:©2015 Elsevier B.V.在神经元培养物中,糖原合酶激酶3(GSK3)在N末端被激活的谷氨酸受体下游的钙蛋白酶截短。但是,尚未研究该截短的体内生物学意义。为了阐明GSK3截短是否具有病理生理相关性,我们使用了大鼠腹膜内注射的海藻酸(KA)和小鼠的杏仁内KA显微注射作为兴奋性毒性的体内模型。通过免疫组织化学分析的血影蛋白裂解在KA-腹膜内处理的大鼠的CA1海马区中观察到,而CA3区域是杏仁核内KA显微注射后受影响的海马区。在两种治疗中,使用识别GSK3βN末端的抗体,GSK3β免疫荧光均未与截短的血影蛋白共定位。因此,那些血影蛋白阳性的神经元不显示GSK3β免疫标记。为了在体外研究GSK3β的截断,我们将器官型海马切片和皮质神经元暴露于KA导致GSK3截短,我们发现截短被钙蛋白酶抑制剂calpeptin阻断。这些数据表明N末端GSK3β截短与兴奋性毒性之间的关系。总体而言,我们的数据加强了谷氨酸受体与GSK3之间的重要关系,以及它们在涉及兴奋性毒性的神经退行性过程中的作用。

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