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Small molecules enhance autophagy and reduce toxicity in Huntington's disease models

机译:小分子增强亨廷顿氏病模型中的自噬并降低毒性

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摘要

The target of rapamycin proteins regulate various cellular processes including autophagy, which may play a protective role in certain neurodegenerative and infectious diseases. Here we show that a primary small-molecule screen in yeast yields novel small-molecule modulators of mammalian autophagy. We first identified new small-molecule enhancers (SMER) and inhibitors (SMIR) of the cytostatic effects of rapamycin in Saccharomyces cerevisiae. Three SMERs induced autophagy independently of rapamycin in mammalian cells, enhancing the clearance of autophagy substrates such as mutant huntingtin and A53T alpha-synuclein, which are associated with Huntington's disease and familial Parkinson's disease, respectively. These SMERs, which seem to act either independently or downstream of the target of rapamycin, attenuated mutant huntingtin-fragment toxicity in Huntington's disease cell and Drosophila melanogaster models, which suggests therapeutic potential. We also screened structural analogs of these SMERs and identified additional candidate drugs that enhanced autophagy substrate clearance. Thus, we have demonstrated proof of principle for a new approach for discovery of small-molecule modulators of mammalian autophagy.
机译:雷帕霉素蛋白的靶标调节各种细胞过程,包括自噬,这可能在某些神经退行性疾病和传染性疾病中起保护作用。在这里,我们显示出酵母中的初级小分子筛选产生了哺乳动物自噬的新型小分子调节剂。我们首先确定了雷帕霉素在酿酒酵母中的细胞抑制作用的新的小分子增强剂(SMER)和抑制剂(SMIR)。三种SMERs在哺乳动物细胞中独立于雷帕霉素诱导自噬,从而增强了自噬底物(如亨廷顿氏病和家族性帕金森氏病)相关的突变亨廷顿蛋白和A53Tα-突触核蛋白的清除。这些似乎独立于雷帕霉素或在雷帕霉素靶标下游起作用的SMERs,在亨廷顿氏病细胞和果蝇果蝇模型中减弱了突变型亨廷顿片段毒性,这表明了治疗潜力。我们还筛选了这些SMERs的结构类似物,并鉴定了增强自噬底物清除率的其他候选药物。因此,我们已经证明了一种用于哺乳动物自噬小分子调节剂发现新方法的原理证明。

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