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Abnormal interaction between the mitochondrial fission protein Drp1 and hyperphosphorylated tau in Alzheimer's disease neurons: implications for mitochondrial dysfunction and neuronal damage

机译:阿尔茨海默氏病神经元中线粒体裂变蛋白Drp1和磷酸化tau的异常相互作用:对线粒体功能障碍和神经元损伤的影响

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摘要

We recently reported increased mitochondrial fission and decreased fusion, increased amyloid beta (Aβ) interaction with the mitochondrial fission protein Drp1, increased mitochondrial fragmentation, impaired axonal transport of mitochondria and synaptic degeneration in neurons affected by AD. In the present study, we extended our previous investigations to determine whether phosphorylated tau interacts with Drp1 and to elucidate mitochondrial damage in the progression of AD. We also investigated GTPase activity, which is critical for mitochondrial fragmentation, in postmortem brain tissues from patients with AD and brain tissues from APP, APP/PS1 and 3XTg.AD mice. Using co-immunoprecipitation and immunofluorescence analyses, for the first time, we demonstrated the physical interaction between phosphorylated tau and Drp1. Mitochondrial fission-linked GTPase activity was significantly elevated in the postmortem frontal cortex tissues from AD patients and cortical tissues from APP, APP/PS1 and 3XTg.AD mice. On the basis of these findings, we conclude that Drp1 interacts with Aβ and phosphorylated tau, likely leading to excessive mitochondrial fragmentation, and mitochondrial and synaptic deficiencies, ultimately possibly leading to neuronal damage and cognitive decline. Treatment designed to reduce the expression of Drp1, Aβ and/or phosphorylated tau may decrease the interaction between Drp1 and phosphorylated tau and the interaction between Drp1 and Aβ, conferring protection to neurons from toxic insults of excessive Drp1, Aβ and/or phosphorylated tau.
机译:我们最近报道了线粒体裂变增加,融合减少,淀粉样β(Aβ)与线粒体裂变蛋白Drp1的相互作用增加,线粒体破碎增加,线粒体轴突运输受损,突触变性受AD影响的神经元。在本研究中,我们扩展了先前的研究,以确定磷酸化的tau是否与Drp1相互作用,并阐明AD进展中的线粒体损伤。我们还研究了AD患者的死后脑组织以及APP,APP / PS1和3XTg.AD小鼠的脑组织中的GTPase活性,这对于线粒体片段化至关重要。首次使用免疫共沉淀和免疫荧光分析,我们证明了磷酸化的tau和Drp1之间的物理相互作用。 AD患者的死后额叶皮质组织和APP,APP / PS1和3XTg.AD小鼠的线粒体裂变相关的GTP酶活性显着升高。根据这些发现,我们得出结论,Drp1与Aβ和磷酸化的tau相互作用,可能导致线粒体碎片过多,以及线粒体和突触缺陷,最终可能导致神经元损伤和认知能力下降。旨在减少Drp1,Aβ和/或磷酸化tau表达的治疗可能会降低Drp1和磷酸化tau之间的相互作用以及Drp1和Aβ之间的相互作用,从而保护神经元免受过量Drp1,Aβ和/或磷酸化tau的毒性伤害。

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  • 来源
    《Human Molecular Genetics》 |2012年第11期|p.2538-2547|共10页
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    1Neurogenetics Laboratory, Neuroscience Division, Oregon National Primate Research Center, West Campus, Oregon Health and Science University, 505 NW 185th Avenue, Beaverton, OR 97006, USA and 2Physiology and Pharmacology Department, Oregon Health and Science University, 3181 SW Sam Jackson Park Road, Portland, OR 97239, USA;

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