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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >The amyloid precursor protein intracellular domain (AICD) disrupts actin dynamics and mitochondrial bioenergetics
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The amyloid precursor protein intracellular domain (AICD) disrupts actin dynamics and mitochondrial bioenergetics

机译:淀粉样蛋白前体细胞内结构域(AICD)破坏肌动蛋白动力学和线粒体生物能

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摘要

The amyloid precursor protein (APP) is critically involved in the pathogenesis of Alzheimer's disease, and is strongly up-regulated in response to traumatic, metabolic, or toxic insults to the nervous system. The processing of APP by gamma/epsilon secretase activity results in the generation of the APP intracellular domain (AICD). Previously, we have shown that AICD induces the expression of genes (transgelin. alpha<2-actin) with functional roles in actin organization and dynamics and demonstrated that the induction of AICD and its co-activator Fe65 (AICD/Fe65) resulted in a loss of organized filamentous actin structures within the cell. As mitochondrial function is thought to be reliant on ordered actin dynamics, we examined mitochondrial function in human SHEP neuroblastoma cells inducibly expressing AICD/Fe65. Confocal analysis of themitochondrial membrane potential identified a significant decrease in the in the AICD50/Fe65 over-expressing cells. This was paralleled by significantly reduced ATP levels and decreased basal superoxide production. Over-expression of the proposed AICD target gene transgelin in SHEP-SF parental cells and primary neurons was sufficient to destabilize actin filaments, depolarize and significantly alter mitochondrial disrtibution and morphology. Our data demonstrate that the induction of AICD/Fe65 or transgelin significantly alters actin dynamics and mitochondrial function in neuronal cells.
机译:淀粉样蛋白前体蛋白(APP)至关重要地参与了阿尔茨海默氏病的发病机理,并在对神经系统的创伤,代谢或毒性损伤作出反应后被强烈上调。通过γ/ε分泌酶活性对APP的加工导致APP细胞内结构域(AICD)的产生。以前,我们已经证明AICD诱导具有肌动蛋白组织和动力学功能的基因(transgelin.α<2-actin)的表达,并证明AICD及其共激活因子Fe65(AICD / Fe65)的诱导导致了ACD的诱导。细胞内有组织的丝状肌动蛋白结构的缺失。由于线粒体功能被认为依赖于有序的肌动蛋白动力学,因此我们检查了诱导表达AICD / Fe65的人SHEP神经母细胞瘤细胞中的线粒体功能。线粒体膜电位的共聚焦分析发现AICD50 / Fe65过表达细胞中的显着降低。同时,ATP水平显着降低,基础超氧化物生成降低。在SHEP-SF亲代细胞和原代神经元中过量表达拟议的AICD靶基因转胶蛋白足以使肌动蛋白丝失稳,去极化并显着改变线粒体分布和形态。我们的数据表明,AICD / Fe65或转胶蛋白的诱导显着改变神经元细胞中的肌动蛋白动力学和线粒体功能。

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