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Tau accumulation impairs mitophagy via increasing mitochondrial membrane potential and reducing mitochondrial Parkin

机译:Tau积累通过增加线粒体膜电位和减少线粒体帕金蛋白而损害线粒体

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摘要

Intracellular accumulation of wild type tau is a hallmark of sporadic Alzheimer's disease (AD). However, the molecular mechanisms underlying tau toxicity is not fully understood. Here, we detected mitophagy deficits evidenced by the increased levels of mitophagy markers, including COX IV, TOMM20, and the ratio of mtDNA to genomic DNA indexed as mt-Atp6/Rpl13, in the AD brains and in the human wild type full-length tau (htau) transgenic mice. More interestingly, the mitophagy deficit was only shown in the AD patients who had an increased total tau level. Further studies demonstrated that overexpression of htau induced mitophagy deficits in HEK293 cells, the primary hippocampal neurons and in the brains of C57 mice. Upon overexpression of htau, the mitochondrial membrane potential was increased and the levels of PTEN-induced kinase 1 (PINK1) and Parkin decreased in the mitochondrial fraction, while upregulation of Parkin attenuated the htau-induced mitophagy deficits. Finally, we detected a dose-dependent allocation of tau proteins into the mitochondrial outer membrane fraction along with its cytoplasmic accumulation. These data suggest that intracellular accumulation of htau induces mitophagy deficits by direct inserting into the mitochondrial membrane and thus increasing the membrane potential, which impairs the mitochondrial residence of PINK1/Parkin. Our findings reveal a novel mechanism underlying the htau-induced neuronal toxicities in AD and other tauopathies.
机译:野生型tau的细胞内积累是偶发性阿尔茨海默氏病(AD)的标志。但是,尚未完全了解tau毒性的分子机制。在这里,我们检测到AD大脑和人类野生型全长中线粒体标记物(包括COX IV,TOMM20和以mt-Atp6 / Rpl13索引的mtDNA与基因组DNA的比率)增加的线粒体缺陷证明了这一点。 tau(htau)转基因小鼠。更有趣的是,仅在总tau水平升高的AD患者中出现了线粒体缺陷。进一步的研究表明,htau的过度表达在HEK293细胞,原代海马神经元和C57小鼠的大脑中引起线粒体缺陷。 htau过度表达后,线粒体部分线粒体膜电位增加,PTEN诱导的激酶1(PINK1)和Parkin的水平降低,而Parkin的上调减弱了htau诱导的线粒体缺陷。最后,我们检测到tau蛋白与线粒体外膜部分及其细胞质积累的剂量依赖性分配。这些数据表明,htau的细胞内积累可通过直接插入线粒体膜并因此增加膜电位来诱导线粒体缺陷,从而损害PINK1 / Parkin的线粒体驻留。我们的发现揭示了由htau引起的AD和其他疾病中神经元毒性的新机制。

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