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SINEUP 非编码 RNA 可挽救弗里德里希共济失调症细胞模型中缺陷的 frataxin 表达和活性。

SINEUP non-coding RNAs rescue defective frataxin expression and activity in a cellular model of Friedreich's Ataxia.

机构信息

Central RNA Laboratory, Istituto Italiano di Tecnologia (IIT), Genova, Italy.

Area of Neuroscience, International School for Advanced Studies (SISSA), Italy.

出版信息

Nucleic Acids Res. 2019 Nov 18;47(20):10728-10743. doi: 10.1093/nar/gkz798.

Abstract

Friedreich's ataxia (FRDA) is an untreatable disorder with neuro- and cardio-degenerative progression. This monogenic disease is caused by the hyper-expansion of naturally occurring GAA repeats in the first intron of the FXN gene, encoding for frataxin, a protein implicated in the biogenesis of iron-sulfur clusters. As the genetic defect interferes with FXN transcription, FRDA patients express a normal frataxin protein but at insufficient levels. Thus, current therapeutic strategies are mostly aimed to restore physiological FXN expression. We have previously described SINEUPs, natural and synthetic antisense long non-coding RNAs, which promote translation of partially overlapping mRNAs through the activity of an embedded SINEB2 domain. Here, by in vitro screening, we have identified a number of SINEUPs targeting human FXN mRNA and capable to up-regulate frataxin protein to physiological amounts acting at the post-transcriptional level. Furthermore, FXN-specific SINEUPs promote the recovery of disease-associated mitochondrial aconitase defects in FRDA-derived cells. In summary, we provide evidence that SINEUPs may be the first gene-specific therapeutic approach to activate FXN translation in FRDA and, more broadly, a novel scalable platform to develop new RNA-based therapies for haploinsufficient diseases.

摘要

弗里德赖希共济失调(FRDA)是一种无法治愈的疾病,具有神经和心脏退行性进展。这种单基因疾病是由 FXN 基因第一内含子中天然存在的 GAA 重复序列的过度扩张引起的,该基因编码 frataxin,一种参与铁硫簇生物发生的蛋白质。由于遗传缺陷干扰了 FXN 的转录,FRDA 患者表达正常的 frataxin 蛋白,但水平不足。因此,目前的治疗策略主要旨在恢复生理 FXN 表达。我们之前描述了 SINEUPs,这是天然和合成的反义长非编码 RNA,通过嵌入的 SINEB2 结构域的活性促进部分重叠 mRNA 的翻译。在这里,通过体外筛选,我们鉴定了许多针对人 FXN mRNA 的 SINEUPs,它们能够通过在转录后水平上调 frataxin 蛋白至生理水平来发挥作用。此外,FXN 特异性 SINEUPs 可促进 FRDA 衍生细胞中与疾病相关的线粒体 aconitase 缺陷的恢复。总之,我们提供的证据表明,SINEUPs 可能是第一个针对 FRDA 中 FXN 翻译的基因特异性治疗方法,更广泛地说,是一种新的可扩展平台,可用于开发针对单等位基因不足疾病的新型基于 RNA 的治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/082a/6847766/a7e27c2fb8fd/gkz798fig1.jpg

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