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首页> 外文期刊>Neurobiology of Aging: Experimental and Clinical Research >Genetic or pharmacological activation of the Drosophila PGC-1 alpha ortholog spargel rescues the disease phenotypes of genetic models of Parkinson's disease
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Genetic or pharmacological activation of the Drosophila PGC-1 alpha ortholog spargel rescues the disease phenotypes of genetic models of Parkinson's disease

机译:果蝇PGC-1αorthogSpargel的遗传或药理学活化抵押帕金森病的遗传模型疾病表型

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摘要

Despite intensive research, the etiology of Parkinson's disease (PD) remains poorly understood and the disease remains incurable. However, compelling evidence gathered over decades of research strongly support a role for mitochondrial dysfunction in PD pathogenesis. Related to this, PGC-1 alpha, a key regulator of mitochondrial biogenesis, has recently been proposed to be an attractive target for intervention in PD. Here, we showed that silencing of expression of the Drosophila PGC-1 alpha ortholog spargel results in PD-related phenotypes in flies and also seem to negate the effects of AMPK activation, which we have previously demonstrated to be neuroprotective, that is, AMPK-mediated neuroprotection appears to require PGC-1 alpha. Importantly, we further showed that genetic or pharmacological activation of the Drosophila PGC-1 alpha ortholog spargel is sufficient to rescue the disease phenotypes of Parkin and LRRK2 genetic fly models of PD, thus supporting the proposed use of PGC-1 alpha-related strategies for neuroprotection in PD. (C) 2017 National Neuroscience Institute. Published by Elsevier Inc.
机译:尽管研究密集,但帕金森病(PD)的病因仍然明确,疾病仍然是可行的。然而,令人信服的证据收集了几十年的研究,强烈支持对PD发病机制的线粒体功能障碍的作用。与此相关的是,最近提出了一种线粒体生物发生的关键调节剂,这是一种有吸引力的PD介入的有吸引力的目标。在这里,我们表明,果蝇PGC-1ααorthogSpargel的表达沉默导致苍蝇的PD相关表型,并且似乎否定了AMPK活化的影响,我们以前证明是神经保护的,即AMPK-介导的神经保护似乎需要PGC-1α。重要的是,我们进一步表明,果蝇PGC-1α的遗传或药理学活化是足以拯救PDC和LRRK2遗传飞行模型的PD疾病表型,从而支持PGC-1α-alpha相关策略的拟议使用PD中的神经保护。 (c)2017国家神经科学院。 elsevier公司发布

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