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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Amyloid precursor protein expression in the rat hippocampal dentate gyrus modulates during memory consolidation.
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Amyloid precursor protein expression in the rat hippocampal dentate gyrus modulates during memory consolidation.

机译:大鼠海马齿状回中的淀粉样前体蛋白表达在记忆巩固过程中调节。

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Despite advances in our understanding of the basic biology of amyloid precursor protein (APP), the normal physiological function(s) of APP in learning and memory remains unclear. Here we show increased APP degradation in the hippocampus to be associated with the consolidation of a passive avoidance response. Neurone-specific APP695 expression became transiently reduced 2-4 h post-training through association with endosomal adaptin proteins and enhanced internalization. By contrast, internalization of glial-associated APP containing a Kunitz protease inhibitor-like domain (APP-KPI) was dependent on the low-density lipoprotein receptor-related protein (LRP). In addition, LRP expression and association with apolipoprotein E increased in the 2-4 h post-training period. The LRP antagonist receptor-associated protein prevented the APP-KPI internalization and LRP-apolipoprotein E association and this resulted in amnesia. Degradation of APP695 and APP-KPI did not appear to be related to alpha-secretase activity, as no learning-associated increase of secreted APP was observed in the CSF. Moreover, as internalization of APP isoforms was observed only in dentate gyrus, it probably relates to the learning-associated restructuring of the perforant path terminals. Memory-associated APP processing in both neuronal and glial compartments points to a role for glial unsheathing of synaptic connections, an event required for the synaptic restructuring that accompanies memory consolidation. These observations may have a direct relevance to understanding the pathophysiology of Alzheimer's disease as beta/gamma-secretase-derived beta-amyloid is formed following internalization of cell surface APP into the endosomal compartment.
机译:尽管我们对淀粉样蛋白前体蛋白(APP)的基本生物学有了新的了解,但APP在学习和记忆中的正常生理功能仍然不清楚。在这里,我们显示出海马APP降解的增加与被动回避反应的巩固有关。神经元特异性APP695表达在训练后2-4小时通过与内体衔接蛋白结合并增强内在化而暂时降低。相比之下,包含Kunitz蛋白酶抑制剂样结构域(APP-KPI)的神经胶质相关APP的内在依赖于低密度脂蛋白受体相关蛋白(LRP)。另外,在训练后的2-4小时内,LRP表达和与载脂蛋白E的结合增加。 LRP拮抗剂受体相关蛋白阻止了APP-KPI内在化和LRP-载脂蛋白E结合,从而导致失忆。 APP695和APP-KPI的降解似乎与α-分泌酶活性无关,因为在CSF中未观察到与学习相关的分泌APP的增加。此外,由于仅在齿状回中观察到APP同工型的内在化,所以它可能与穿孔路径末端的学习相关重组有关。神经元和神经胶质区室中与记忆相关的APP处理都表明神经胶质脱出突触连接,这是伴随记忆巩固的突触重组所需的事件。这些观察结果可能与了解阿尔茨海默氏病的病理生理有直接关系,因为在细胞表面APP内化到内体区室后会形成β/γ-分泌酶衍生的β-淀粉样蛋白。

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