首页> 美国卫生研究院文献>Nucleic Acids Research >From dynamic combinatorial ‘hit’ to lead: in vitro and in vivo activity of compounds targeting the pathogenic RNAs that cause myotonic dystrophy
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From dynamic combinatorial ‘hit’ to lead: in vitro and in vivo activity of compounds targeting the pathogenic RNAs that cause myotonic dystrophy

机译:从动态组合击中到导致:针对导致肌强直性营养不良的致病性RNA的化合物的体外和体内活性

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摘要

The myotonic dystrophies (DM) are human diseases in which the accumulation of toxic RNA (CUG or CCUG) repeats in the cell causes sequestration of splicing factors, including MBNL1, leading to clinical symptoms such as muscle wasting and myotonia. We previously used Dynamic Combinatorial Chemistry to identify the first compounds known to inhibit (CUG)-MBNL1 binding in vitro. We now report transformation of those compounds into structures with activity in vivo. Introduction of a benzo[g]quinoline substructure previously unknown in the context of RNA recognition, as well as other modifications, provided several molecules with enhanced binding properties, including compounds with strong selectivity for CUG repeats over CAG repeats or CAG–CUG duplex RNA. Compounds readily penetrate cells, and improve luciferase activity in a mouse myoblast assay in which enzyme function is coupled to a release of nuclear CUG–RNA retention. Most importantly, two compounds are able to partially restore splicing in a mouse model of DM1.
机译:肌强直性营养不良(DM)是人类疾病,其中有毒RNA(CUG或CCUG)在细胞中重复发生,导致螯合包括MBNL1在内的剪接因子,导致诸如肌肉萎缩和肌强直等临床症状。我们以前使用动态组合化学来鉴定第一个已知在体外抑制(CUG)-MBNL1结合的化合物。现在我们报道将这些化合物转化为具有体内活性的结构。引入先前在RNA识别中未知的苯并[g]喹啉亚结构以及其他修饰,提供了几种具有增强结合特性的分子,包括对CUG重复序列比对CAG重复序列或CAG–CUG双链RNA具有强选择性的化合物。化合物易于在小鼠成肌细胞试验中穿透细胞,并提高萤光素酶活性,该酶功能与释放核CUG-RNA保留有关。最重要的是,两种化合物能够在DM1小鼠模型中部分恢复剪接。

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