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首页> 外文期刊>Nature Metabolism >Tetracyclines promote survival and fitness in mitochondrial disease models
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Tetracyclines promote survival and fitness in mitochondrial disease models

机译:四环素促进生存和健身线粒体疾病模型

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Mitochondrial diseases (MDs) are a heterogeneous group of disorders resulting from mutations in nuclear or mitochondrial DNA genes encoding mitochondrial proteins(1,2). MDs cause pathologies with severe tissue damage and ultimately death(3,4). There are no cures for MDs and current treatments are only palliative(5-7). Here we show that tetracyclines improve fitness of cultured MD cells and ameliorate disease in a mouse model of Leigh syndrome. To identify small molecules that prevent cellular damage and death under nutrient stress conditions, we conduct a chemical high-throughput screen with cells carrying human MD mutations and discover a series of antibiotics that maintain survival of various MD cells. We subsequently show that a sub-library of tetracycline analogues, including doxycycline, rescues cell death and inflammatory signatures in mutant cells through partial and selective inhibition of mitochondrial translation, resulting in an ATF4-independent mitohormetic response. Doxycycline treatment strongly promotes fitness and survival of Ndufs4(-/-) mice, a preclinical Leigh syndrome mouse model(8). A proteomic analysis of brain tissue reveals that doxycycline treatment largely prevents neuronal death and the accumulation of neuroimmune and inflammatory proteins in Ndufs4(-/-) mice, indicating a potential causal role for these proteins in the brain pathology. Our findings suggest that tetracyclines deserve further evaluation as potential drugs for the treatment of MDs.
机译:线粒体疾病(MDs)是一个异类群失调造成的突变核和线粒体DNA的基因编码线粒体蛋白质(1、2)。与严重的组织损伤和疾病最终死亡(3、4)。和目前的治疗只是缓和(5 - 7)。在这里,我们表明,四环素改善健康医学细胞培养和改善疾病的利综合征小鼠模型。分子,防止细胞损伤和死亡在养分胁迫的条件下,我们进行一次化学与细胞筛选携带人类医学和发现一系列突变维持生存的各种的抗生素医学细胞。四环素的类似物,包括强力霉素,救助细胞死亡和炎症签名突变细胞通过部分和选择性抑制线粒体翻译,导致一个ATF4-independent mitohormetic响应。健康和生存Ndufs4(- / -)小鼠临床前利综合征小鼠模型(8)。大脑组织的蛋白质组学分析表明,强力霉素治疗很大程度上防止神经元死亡和神经免疫和的积累炎症蛋白质Ndufs4(- / -)小鼠,这些指示潜在的因果作用蛋白质在大脑病理学。进一步表明,四环素应得的评价作为潜在的药物治疗MDs。

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