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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Excitotoxin-induced neuronal death is associated with response of a unique intracellular aspartic proteinase, cathepsin E.
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Excitotoxin-induced neuronal death is associated with response of a unique intracellular aspartic proteinase, cathepsin E.

机译:兴奋毒素诱导的神经元死亡与独特的细胞内天冬氨酸蛋白酶组织蛋白酶E的反应有关。

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Excitotoxicity produced by excessive stimulation of glutamate receptors is known to lead to neuronal lesion and death. Here, we demonstrate that quantitative and qualitative changes in cathepsin E (CE) gene products are associated with execution of the excitotoxic neuronal death. Intracerebroventricular injection of kainate (KA) resulted in marked elevation of both mRNA and protein levels of CE in the rat hippocampal CA3 region, where the enzyme was mainly found in vulnerable neurons and activated microglia. Northern blot analysis showed that the size of the transcript for CE was identical with that normally expressed in rat spleen. Immunoblot analysis, however, revealed the predominant occurrence of the highly modified CE species, besides the mature CE. This polypeptide was distinct from the mature CE in molecular masses (106 vs. 82 kDa) and pI (6.4-7.3 vs. 5.0-5.5) and showed resistance to conversion into the enzymatically active form by acid treatment. Consistent with these in vivo results, administration of glutamate to primary cultured rat hippocampal neurons resulted in a marked expression of this novel CE species. These data indicate that excessive stimulation of glutamate receptors causes induction of the CE gene response followed by persistent expression of CE in the novel form, besides its mature form, predominantly in the hippocampal neurons.
机译:过度刺激谷氨酸受体产生的兴奋性毒性已知会导致神经元病变和死亡。在这里,我们证明组织蛋白酶E(CE)基因产物的定量和定性变化与兴奋毒性神经元死亡的执行有关。脑室内注射海藻酸盐(KA)导致大鼠海马CA3区CE的mRNA和蛋白水平明显升高,该酶主要存在于脆弱的神经元和活化的小胶质细胞中。 Northern印迹分析显示CE的转录物大小与正常在大鼠脾脏中表达的大小相同。然而,免疫印迹分析显示,除了成熟的CE外,还主要发生高度修饰的CE物种。该多肽在分子量(106 vs. 82 kDa)和pI(6.4-7.3 vs. 5.0-5.5)方面不同于成熟的CE,并且显示出对通过酸处理转化为酶活性形式的抵抗力。与这些体内结果一致,向原代培养的大鼠海马神经元施用谷氨酸导致这种新型CE物种的明显表达。这些数据表明,谷氨酸受体的过度刺激引起CE基因应答的诱导,继之以新形式的CE,除了其成熟形式外,主要在海马神经元中持续表达。

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