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Design of a bioactive small molecule that targets r(AUUCU) repeats in spinocerebellar ataxia 10

机译:靶向r(AUUCU)在脊髓小脑共济失调中重复的生物活性小分子的设计10

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摘要

RNA is an important target for chemical probes of function and lead therapeutics; however, it is difficult to target with small molecules. One approach to tackle this problem is to identify compounds that target RNA structures and utilize them to multivalently target RNA. Here we show that small molecules can be identified to selectively bind RNA base pairs by probing a library of RNA-focused small molecules. A small molecule that selectively binds AU base pairs informed design of a dimeric compound (>2AU-2) that targets the pathogenic RNA, expanded r(AUUCU) repeats, that causes spinocerebellar ataxia type 10 (SCA10) in patient-derived cells. Indeed, >2AU-2 (50 nM) ameliorates various aspects of SCA10 pathology including improvement of mitochondrial dysfunction, reduced activation of caspase 3, and reduction of nuclear foci. These studies provide a first-in-class chemical probe to study SCA10 RNA toxicity and potentially define broadly applicable compounds targeting RNA AU base pairs in cells.
机译:RNA是功能和化学疗法的化学探针的重要靶点;但是,以小分子为目标很难。解决该问题的一种方法是鉴定靶向RNA结构的化合物,并利用它们多价靶向RNA。在这里,我们显示通过探测RNA聚焦的小分子文库,可以识别出小分子选择性结合RNA碱基对。一个选择性结合AU碱基对的小分子可用于靶向致病性RNA的二聚体化合物(> 2AU-2 )的设计,扩大的r(AUUCU)重复出现,从而导致脊髓小脑共济失调10型(SCA10)患者来源的细胞。实际上,> 2AU-2 (50μm)可以改善SCA10病理的各个方面,包括改善线粒体功能障碍,减少caspase 3的活化以及减少核灶。这些研究提供了一流的化学探针来研究SCA10 RNA的毒性,并可能定义针对细胞中RNA AU碱基对的广泛适用的化合物。

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