首页> 外文期刊>Human Molecular Genetics >Reduced dynamin-related protein 1 protects against phosphorylated Tau-induced mitochondrial dysfunction and synaptic damage in Alzheimer’s disease
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Reduced dynamin-related protein 1 protects against phosphorylated Tau-induced mitochondrial dysfunction and synaptic damage in Alzheimer’s disease

机译:相关的动力学相关蛋白1可保护磷酸化的Tau诱导的线粒体功能障碍和阿尔茨海默病的突触损伤

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摘要

The purpose of our study was to understand the protective effects of a partial reduction of dynamin-related protein 1 (Drp1) in Alzheimer’s disease (AD) progression and pathogenesis. Increasing evidence suggests that phosphorylated Tau and mitochondrial abnormalities are involved in the loss of synapses, defective axonal transport and cognitive decline, in patients with AD. In the current study, we investigated whether a partial reduction of Drp1 protect neurons from phosphorylated Tau-induced mitochondrial and synaptic toxicities in AD progression. We crossed Drp1+/? mice with Tau transgenic mice (P301L line) and created double mutant (TauXDrp1+/?) mice. Using real-time RT-PCR, immunoblotting and immunostaining analyses, we measured mRNA expressions and protein levels of genes related to the mitochondrial dynamics—Drp1 and Fis1 (fission), Mfn1, Mfn2 and Opa1 (fusion), CypD (matrix), mitochondrial biogenesis—Nrf1, Nrf2, PGC1α and TFAM and synaptic—synaptophysin, PSD95, synapsin 1, synaptobrevin 1, neurogranin, GAP43 and synaptopodin in brain tissues from 6-month-old Drp1+/?, Tau, TauXDrp1+/? and wild-type mice. Using biochemical and immunoblotting methods, mitochondrial function and phosphorylated Tau were measured. Decreased mRNA and protein levels of fission and matrix and increased levels of fusion, mitochondrial biogenesis, and synaptic genes were found in 6-month-old TauXDrp1+/? mice relative to Tau mice. Mitochondrial dysfunction was reduced in TauXDrp1+/? mice relative to Tau mice. Phosphorylated Tau found to be reduced in TauXDrp1+/? mice relative to Tau mice. These findings suggest that a partial reduction of Drp1 decreases the production of phosphorylated Tau, reduces mitochondrial dysfunction, and maintains mitochondrial dynamics, enhances mitochondrial biogenesis and synaptic activity in Tau mice. Findings of this study may have implications for the development of Drp1 based therapeutics for patients with AD and other tauopathies.
机译:我们研究的目的是了解发动机相关蛋白1(DRP1)在阿尔茨海默病(AD)进展和发病机制中的部分减少的保护作用。越来越多的证据表明,AD患者中磷酸化的TAU和线粒体异常涉及突变,缺陷的轴突运输和认知下降,患者。在目前的研究中,我们研究了DRP1的部分还原是否保护神经元免受AD进展中的磷酸化TAU诱导的线粒体和突触毒性。我们越过DRP1 + /?用TAU转基因小鼠(P301L线)和产生双突变体(TAUXDRP1 + /α)小鼠的小鼠。使用实时RT-PCR,免疫印迹和免疫染色分析,我们测量了与线粒体动力学-DRP1和FIS1(裂变),MFN1,MFN2和OPA1(融合),CYPD(基质),线粒体相关的mRNA表达和蛋白质水平的基因。生物发生-NRF1,NRF2,PGC1α和TFAM和Synaptic-Synaptophysin,PSD95,Synappoin 1,Synaptobrevin 1,Neurogranin,Gap43和脑组织中的脑组织中的突触肽,来自Tau,Tauxdrp1 + /?和野生型小鼠。使用生物化学和免疫印迹方法,测量线粒体功能和磷酸化TAU。在6个月大的Tauxdrp1 + /中发现裂变和基质的mRNA和蛋白质水平降低,融合,线粒体生物发生和突触基因增加,以及突触基因相对于Tau小鼠的小鼠。 tauxdrp1 + /αs的线粒体功能障碍降低了相对于Tau小鼠的小鼠。磷酸化的tau发现在tauxdrp1 + /?相对于Tau小鼠的小鼠。这些发现表明,DRP1的部分减少降低了磷酸化Tau的生产,减少了线粒体功能障碍,并保持线粒体动态,增强了Tau小鼠的线粒体生物发生和突触活性。本研究的结果可能对基于DRP1的患者的DRP1的治疗方法产生了影响。

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