Laboratory of Genetics and Molecular Medicine, Instituto de Biomedicina de Valencia, CSIC, Valencia, Spain.
PLoS One. 2010 Jan 25;5(1):e8872. doi: 10.1371/journal.pone.0008872.
Friedreich ataxia is a neurodegenerative disease caused by the lack of frataxin, a mitochondrial protein. We previously demonstrated that frataxin interacts with complex II subunits of the electronic transport chain (ETC) and putative electronic transfer flavoproteins, suggesting that frataxin could participate in the oxidative phosphorylation.
Here we have investigated the effect of riboflavin and its cofactors flavin adenine dinucleotide (FAD) and flavin mononucleotide (FMN) in Saccharomyces cerevisiae and Caenorhabditis elegans models of frataxin deficiency. We used a S. cerevisiae strain deleted for the yfh1 gene obtained by homologous recombination and we assessed growth in fermentable and non-fermentable cultures supplemented with either riboflavin or its derivates. Experiments with C. elegans were performed in transient knock-down worms (frh-1[RNAi]) generated by microinjection of dsRNA frh-1 into the gonads of young worms. We observed that FAD rescues the phenotype of both defective organisms. We show that cell growth and enzymatic activities of the ETC complexes and ATP production of yfh1Delta cells were improved by FAD supplementation. Moreover, FAD also improved lifespan and other physiological parameters in the C. elegans knock-down model for frataxin.
CONCLUSIONS/SIGNIFICANCE: We propose that rescue of frataxin deficiency by FAD supplementation could be explained by an improvement in mitochondrial respiration. We suggest that riboflavin may be useful in the treatment of Friedreich ataxia.
弗里德赖希共济失调是一种神经退行性疾病,由线粒体蛋白 frataxin 的缺乏引起。我们之前证明 frataxin 与电子传递链(ETC)的复合物 II 亚基和假定的电子转移黄素蛋白相互作用,表明 frataxin 可能参与氧化磷酸化。
在这里,我们研究了核黄素及其辅因子黄素腺嘌呤二核苷酸(FAD)和黄素单核苷酸(FMN)在缺乏 frataxin 的酿酒酵母和秀丽隐杆线虫模型中的作用。我们使用了通过同源重组获得的 yfh1 基因缺失的酿酒酵母菌株,并评估了在添加核黄素或其衍生物的可发酵和不可发酵培养基中的生长情况。在秀丽隐杆线虫中的实验是通过将 dsRNA frh-1 显微注射到年轻线虫的性腺中来进行的瞬时敲低线虫(frh-1[RNAi])。我们观察到 FAD 挽救了这两种有缺陷生物的表型。我们表明,ETC 复合物的细胞生长和酶活性以及 yfh1Delta 细胞的 ATP 产生都通过 FAD 补充得到了改善。此外,FAD 还改善了秀丽隐杆线虫 frataxin 敲低模型的寿命和其他生理参数。
结论/意义:我们提出,FAD 补充对 frataxin 缺乏的挽救可以通过改善线粒体呼吸来解释。我们建议核黄素可能对治疗弗里德赖希共济失调有用。