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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Intraneuronal amyloid-beta1-42 production triggered by sustained increase of cytosolic calcium concentration induces neuronal death.
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Intraneuronal amyloid-beta1-42 production triggered by sustained increase of cytosolic calcium concentration induces neuronal death.

机译:胞浆钙浓度持续增加触发的神经内淀粉样β1-42产生诱导神经元死亡。

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摘要

Alzheimer's disease (AD) is a neurodegenerative disorder characterized by the presence in the brain of senile plaques which contain an amyloid core made of beta-amyloid peptide (Abeta). Abeta is produced by the cleavage of the amyloid precursor protein (APP). Since impairment of neuronal calcium signalling has been causally implicated in ageing and AD, we have investigated the influence of an influx of extracellular calcium on the metabolism of human APP in rat cortical neurones. We report that a high cytosolic calcium concentration, induced by neuronal depolarization, inhibits the alpha-secretase cleavage of APP and triggers the accumulation of intraneuronal C-terminal fragments produced by the beta-cleavage of the protein (CTFbeta). Increase in cytosolic calcium concentration specifically induces the production of large amounts of intraneuronal Abeta1-42, which is inhibited by nimodipine, a specific antagonist of l-type calcium channels. Moreover, calcium release from endoplasmic reticulum is not sufficient to induce the production of intraneuronal Abeta, which requires influx of extracellular calcium mediated by the capacitative calcium entry mechanism. Therefore, a sustained high concentration of cytosolic calcium is needed to induce the production of intraneuronal Abeta1-42 from human APP. Our results show that this accumulation of intraneuronal Abeta1-42 induces neuronal death, which is prevented by a functional gamma-secretase inhibitor.
机译:阿尔茨海默氏病(AD)是一种神经退行性疾病,其特征在于大脑中存在老年斑,老年斑中含有由β-淀粉样肽(Abeta)制成的淀粉样蛋白核心。 Abeta是由淀粉样前体蛋白(APP)的切割产生的。由于神经元钙信号转导的受损与衰老和AD有因果关系,因此我们研究了细胞外钙的流入对大鼠皮质神经元中人APP代谢的影响。我们报告说,由神经元去极化诱导的高细胞溶质钙浓度抑制APP的α-分泌酶裂解,并触发由蛋白质的β-裂解(CTFbeta)产生的神经内C端片段的积累。胞质钙浓度的增加会特异性地诱导大量神经内内Abeta1-42的产生,而尼莫地平是l型钙通道的特异性拮抗剂,它会被抑制。而且,从内质网释放的钙不足以诱导神经内内Abeta的产生,这需要由电容性钙进入机制介导的细胞外钙的流入。因此,需要持续高浓度的胞质钙来诱导人APP产生神经内Abeta1-42。我们的结果表明,神经元内Abeta1-42的这种积累会诱导神经元死亡,这可以通过功能性的γ-分泌酶抑制剂来预防。

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