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Highly specific ubiquitin-competing molecules effectively promote frataxin accumulation and partially rescue the aconitase defect in Friedreich ataxia cells

机译:高度特异性的泛素竞争分子可有效促进frataxin的积累并部分挽救Friedreich共济失调细胞中乌头酸的缺陷

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摘要

Friedreich ataxia is an inherited neurodegenerative disease that leads to progressive disability. There is currently no effective treatment and patients die prematurely. The underlying genetic defect leads to reduced expression of the mitochondrial protein frataxin. Frataxin insufficiency causes mitochondrial dysfunction and ultimately cell death, particularly in peripheral sensory ganglia. There is an inverse correlation between the amount of residual frataxin and the severity of disease progression; therefore, therapeutic approaches aiming at increasing frataxin levels are expected to improve patients' conditions. We previously discovered that a significant amount of frataxin precursor is degraded by the ubiquitin/proteasome system before its functional mitochondrial maturation. We also provided evidence for the therapeutic potential of small molecules that increase frataxin levels by docking on the frataxin ubiquitination site, thus preventing frataxin ubiquitination and degradation. We called these compounds ubiquitin-competing molecules (UCM). By extending our search for effective UCM, we identified a set of new and more potent compounds that more efficiently promote frataxin accumulation. Here we show that these compounds directly interact with frataxin and prevent its ubiquitination. Interestingly, these UCM are not effective on the ubiquitin-resistant frataxin mutant, indicating their specific action on preventing frataxin ubiquitination. Most importantly, these compounds are able to promote frataxin accumulation and aconitase rescue in cells derived from patients, strongly supporting their therapeutic potential.
机译:Friedreich共济失调是一种遗传性神经退行性疾病,可导致进行性残疾。目前尚无有效的治疗方法,患者会过早死亡。潜在的遗传缺陷导致线粒体蛋白frataxin的表达降低。 Frataxin功能不足会导致线粒体功能障碍,并最终导致细胞死亡,特别是在周围感觉神经节中。残留的frataxin的量与疾病进展的严重程度成反比。因此,旨在增加frataxin水平的治疗方法有望改善患者的状况。先前我们发现泛素/蛋白酶体系统在功能性线粒体成熟之前会降解大量的frataxin前体。我们还提供了通过停靠在frataxin泛素化位点而增加frataxin含量的小分子的治疗潜力的证据,从而防止了frataxin泛素化和降解。我们称这些化合物为泛素竞争分子(UCM)。通过扩大对有效UCM的搜索,我们确定了一组新的和更有效的化合物,它们可以更有效地促进frataxin的积累。在这里,我们表明这些化合物直接与frataxin相互作用并阻止其泛素化。有趣的是,这些UCM对抗泛素抗frataxin突变体无效,表明它们在预防frataxin泛素化方面具有特定作用。最重要的是,这些化合物能够促进源自患者的细胞中frataxin的积累和乌头酸酶的拯救,从而有力地支持了它们的治疗潜力。

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