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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Neuroprotective effects of donepezil against Aβ42-induced neuronal toxicity are mediated through not only enhancing PP2A activity but also regulating GSK-3β and nAChRs activity
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Neuroprotective effects of donepezil against Aβ42-induced neuronal toxicity are mediated through not only enhancing PP2A activity but also regulating GSK-3β and nAChRs activity

机译:多奈哌齐对Aβ42诱导的神经元毒性的神经保护作用不仅通过增强PP2A活性,而且还通过调节GSK-3β和nAChRs活性来介导

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The main purpose of this study was to evaluate whether donepezil, acetylcholinesterase inhibitor, shown to play a protective role through inhibiting glycogen synthesis kinase-3β (GSK-3β) activity, could also exert neuroprotective effects by stimulating protein phosphatase 2A (PP2A) activity in the amyloid-beta (Aβ)42-induced neuronal toxicity model of Alzheimer's disease. In Aβ42-induced toxic conditions, each PP2A and GSK-3β activity measured at different times showed time-dependent reverse pattern toward the direction of accelerating neuronal deaths with the passage of time. In addition, donepezil pre-treatment showed dose-dependent stepwise increase of neuronal viability and stimulation of PP2A activity. However, such effects on them were significantly reduced through the depletion of PP2A activity with either okadaic acid or PP2Ac siRNA. In spite of blocked PP2A activity in this Aβ42 insult, however, donepezil pretreatment showed additional significant recovering effect on neuronal viability when compared to the value without donepezil. Moreover, donepezil partially recovered its dephosphorylating effect on hyperphosphorylated tau induced by Aβ42. This observation led us to assume that additional mechanisms of donepezil, including its inhibitory effect on GSK-3β activity and/or the activation role of nicotinic acetylcholine receptors (nAChRs), might be involved. Taken together, our results suggest that the neuroprotective effects of donepezil against Aβ42-induced neurotoxicity are mediated through activation of PP2A, but its additional mechanisms including regulation of GSK-3β and nAChRs activity would partially contribute to its effects. We investigated neuroprotective mechanisms of donepezil against Aβ42 toxicity: Donepezil increased neuronal viability with reduced p-tau by enhancing PP2A activity. Despite of blocked PP2A activity, donepezil showed additional recovering effect on neuronal viability, which findings led us to assume that additional mechanisms of donepezil including its inhibitory effect on GSK-3β activity and activating role of nicotinic AChRs might be involved. We investigated neuroprotective mechanisms of donepezil against Aβ42 toxicity: Donepezil increased neuronal viability with reduced p-tau by enhancing PP2A activity. Despite of blocked PP2A activity, donepezil showed additional recovering effect on neuronal viability, which findings led us to assume that additional mechanisms of donepezil including its inhibitory effect on GSK-3β activity and activating role of nicotinic AChRs might be involved.
机译:这项研究的主要目的是评估乙酰胆碱酯酶抑制剂多奈哌齐是否通过抑制糖原合成激酶3β(GSK-3β)的活性发挥保护作用,是否也可以通过刺激蛋白磷酸酶2A(PP2A)的活性发挥神经保护作用。淀粉样β(Aβ)42诱导的阿尔茨海默氏病神经元毒性模型。在Aβ42诱导的毒性条件下,在不同时间测得的每种PP2A和GSK-3β活性都随着时间的流逝呈时间依赖性的反向模式,朝着加速神经元死亡的方向发展。另外,多奈哌齐预处理显示剂量依赖性神经元活力逐步增加,并刺激PP2A活性。但是,通过用冈田酸或PP2Ac siRNA消耗PP2A活性,显着降低了对它们的这种影响。尽管在这种Aβ42损伤中PP2A活性受到阻滞,但是与没有多奈哌齐的治疗相比,多奈哌齐预处理仍显示出对神经元生存力的显着恢复作用。此外,多奈哌齐部分恢复了其对Aβ42诱导的高磷酸化tau蛋白的去磷酸化作用。该观察结果使我们假设可能涉及多奈哌齐的其他机制,包括其对GSK-3β活性的抑制作用和/或烟碱乙酰胆碱受体(nAChRs)的激活作用。两者合计,我们的结果表明,多奈哌齐对Aβ42诱导的神经毒性的神经保护作用是通过激活PP2A介导的,但其其他机制(包括对GSK-3β和nAChRs活性的调节)将部分有助于其作用。我们研究了多奈哌齐对Aβ42毒性的神经保护机制:多奈哌齐通过增强PP2A活性增加神经元活力,并降低p-tau值。尽管PP2A活性受阻,但多奈哌齐仍显示出对神经元活力的额外恢复作用,这一发现使我们认为多奈哌齐的其他机制可能包括其对GSK-3β活性的抑制作用和烟碱型AChRs的激活作用。我们研究了多奈哌齐对Aβ42毒性的神经保护机制:多奈哌齐通过增强PP2A活性增加神经元活力,并降低p-tau值。尽管PP2A活性受阻,但多奈哌齐仍显示出对神经元活力的额外恢复作用,这一发现使我们假设多奈哌齐的其他机制可能包括其对GSK-3β活性的抑制作用和烟碱型AChRs的激活作用。

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