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Enhancing folic acid metabolism suppresses defects associated with loss of Drosophila mitofusin

机译:增强叶酸代谢可抑制与果蝇线粒体蛋白损失有关的缺陷

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摘要

Mutations in the mitochondrial GTPase mitofusin 2 (MFN2) cause Charcot-Marie-Tooth disease type 2 (CMT2A), a form of peripheral neuropathy that compromises axonal function. Mitofusins promote mitochondrial fusion and regulate mitochondrial dynamics. They are also reported to be involved in forming contacts between mitochondria and the endoplasmic reticulum. The fruit fly, Drosophila melanogaster, is a powerful tool to model human neurodegenerative diseases, including CMT2A. Here, we have downregulated the expression of the Drosophila mitofusin (dMfn RNAi) in adult flies and showed that this activates mitochondrial retrograde signalling and is associated with an upregulation of genes involved in folic acid (FA) metabolism. Additionally, we demonstrated that pharmacological and genetic interventions designed to increase the FA metabolism pathway suppresses the phenotype of the dMfn RNAi flies. We conclude that strategies to increase FA metabolism may ameliorate diseases, such as peripheral neuropathies, that are associated with loss of mitochondrial function. A video abstract for this article is available at .
机译:线粒体GTPase丝裂霉素2(MFN2)中的突变会导致Charcot-Marie-Tooth疾病2型(CMT2A),这是一种损害轴突功能的周围神经病。线粒体融合素促进线粒体融合并调节线粒体动力学。据报道它们还参与线粒体和内质网之间的接触。果蝇果蝇(Drosophila melanogaster)是建模包括CMT2A在内的人类神经退行性疾病的有力工具。在这里,我们下调了果蝇果蝇线粒体融合蛋白(dMfn RNAi)在成年果蝇中的表达,并表明这激活了线粒体逆行信号,并与参与叶酸(FA)代谢的基因上调相关。此外,我们证明了旨在增加FA代谢途径的药理和遗传干预措施可抑制dMfn RNAi蝇的表型。我们得出结论,增加FA代谢的策略可能会改善与线粒体功能丧失有关的疾病,例如周围神经病。有关本文的视频摘要,请参见。

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