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Abnormal interaction of VDAC1 with amyloid beta and phosphorylated tau causes mitochondrial dysfunction in Alzheimer's disease

机译:VDAC1与淀粉样蛋白β和磷酸化tau的异常相互作用导致阿尔茨海默氏病的线粒体功能障碍

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The purpose of our study was to determine the relationship between voltage-dependent anion channel 1 protein (VDAC1) and amyloid beta (Aβ) and phosphorylated tau in Alzheimer's disease (AD). Using brain specimens from AD patients, control subjects and 6-, 12- and 24-month-old Aβ precursor protein (APP) transgenic mice, we studied VDAC1 protein levels. Further, we also studied the interaction between VDAC1 and Aβ (monomers and oligomers) and phosphorylated tau, using cortical issues from AD patients, control subjects, APP, APP/PS1 and 3XTg.AD mice. We also studied age- and VDAC1-linked, mutant APP/Aβ-induced mitochondrial dysfunction in APP and non-transgenic wild-type (WT) mice. We found progressively increased levels of VDAC1 in the cortical tissues from the brains of patients with AD, relative to control subjects, and significantly increased levels of VDAC1 in the cerebral cortices of 6-, 12- and 24-month-old APP transgenic mice, relative to the age-matched control WT mice. Interestingly, we found VDAC1 interacted with Aβ and phosphorylated tau in the brains from AD patients and from APP, APP/PS1 and 3XTg.AD mice. We found progressively increased mitochondrial dysfunction in APP mice relative to WT mice. These observations led us to conclude that VDAC1 interacts with Aβ, and phosphorylated tau may in turn block mitochondrial pores, leading to mitochondrial dysfunction in AD pathogenesis. Based on current study observations, we propose that reduced levels of VDAC1, Aβ and phosphorylated tau may reduce the abnormal interaction between VDAC1 and APP, VDAC1 and Aβ, and VDAC1 and phosphorylated tau; and that reduced levels of VDAC1, Aβ and phosphorylated tau may maintain normal mitochondrial pore opening and pore closure, ultimately leading to normal mitochondrial function, mitochondria supplying ATP to nerve terminals and boosting synaptic and cognitive function in AD.
机译:我们研究的目的是确定阿尔茨海默病(AD)中电压依赖性阴离子通道1蛋白(VDAC1)与淀粉样β(Aβ)和磷酸化tau之间的关系。使用来自AD患者,对照组和6、12和24个月大的Aβ前体蛋白(APP)转基因小鼠的脑标本,我们研究了VDAC1蛋白水平。此外,我们还使用来自AD患者,对照组,APP,APP / PS1和3XTg.AD小鼠的皮层问题研究了VDAC1与Aβ(单体和寡聚体)与磷酸化tau之间的相互作用。我们还研究了年龄和VDAC1连锁的突变APP /Aβ诱导的APP和非转基因野生型(WT)小鼠的线粒体功能障碍。我们发现,与对照组相比,AD患者大脑皮层组织中VDAC1的水平逐渐升高,而6、12和24个月大的APP转基因小鼠的大脑皮层中VDAC1的水平显着升高,相对于年龄匹配的对照WT小鼠。有趣的是,我们发现VDAC1与AD患者以及APP,APP / PS1和3XTg.AD小鼠的大脑中的Aβ和磷酸化的tau相互作用。我们发现,相对于野生型小鼠,APP小鼠的线粒体功能障碍逐渐增加。这些观察结果使我们得出结论,即VDAC1与Aβ相互作用,磷酸化的tau可能反过来阻断线粒体孔,导致AD发病机理中的线粒体功能障碍。根据目前的研究结果,我们认为降低VDAC1,Aβ和磷酸化tau的水平可能会减少VDAC1与APP,VDAC1和Aβ以及VDAC1和磷酸化tau之间的异常相互作用。降低的VDAC1,Aβ和磷酸化tau的水平可以维持正常的线粒体孔打开和孔关闭,最终导致正常的线粒体功能,线粒体向神经末梢提供ATP并增强AD中的突触和认知功能。

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