首页> 美国卫生研究院文献>Nucleic Acids Research >Modifications to toxic CUG RNAs induce structural stability rescue mis-splicing in a myotonic dystrophy cell model and reduce toxicity in a myotonic dystrophy zebrafish model
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Modifications to toxic CUG RNAs induce structural stability rescue mis-splicing in a myotonic dystrophy cell model and reduce toxicity in a myotonic dystrophy zebrafish model

机译:对有毒CUG RNA的修饰可诱导结构稳定性在强直性营养不良性细胞模型中挽救错剪并降低强直性营养不良性斑马鱼模型中的毒性

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摘要

CUG repeat expansions in the 3′ UTR of dystrophia myotonica protein kinase (DMPK) cause myotonic dystrophy type 1 (DM1). As RNA, these repeats elicit toxicity by sequestering splicing proteins, such as MBNL1, into protein–RNA aggregates. Structural studies demonstrate that CUG repeats can form A-form helices, suggesting that repeat secondary structure could be important in pathogenicity. To evaluate this hypothesis, we utilized structure-stabilizing RNA modifications pseudouridine (Ψ) and 2′-O-methylation to determine if stabilization of CUG helical conformations affected toxicity. CUG repeats modified with Ψ or 2′-O-methyl groups exhibited enhanced structural stability and reduced affinity for MBNL1. Molecular dynamics and X-ray crystallography suggest a potential water-bridging mechanism for Ψ-mediated CUG repeat stabilization. Ψ modification of CUG repeats rescued mis-splicing in a DM1 cell model and prevented CUG repeat toxicity in zebrafish embryos. This study indicates that the structure of toxic RNAs has a significant role in controlling the onset of neuromuscular diseases.
机译:肌营养不良症肌强直蛋白激酶(DMPK)的3'UTR中的CUG重复扩增导致1型肌强直性营养不良(DM1)。作为RNA,这些重复序列通过将剪接蛋白(例如MBNL1)螯合到蛋白-RNA聚集体中引发毒性。结构研究表明,CUG重复序列可以形成A型螺旋,这表明重复的二级结构在致病性中可能很重要。为了评估该假设,我们利用结构稳定的RNA修饰假尿苷(Ψ)和2'-O-甲基化来确定CUG螺旋构象的稳定化是否影响毒性。用1或2'-O-甲基修饰的CUG重复序列显示出增强的结构稳定性和对MBNL1的降低的亲和力。分子动力学和X射线晶体学表明suggest介导的CUG重复稳定化的潜在水桥机制。 ΨCUG重复序列的修饰可挽救DM1细胞模型中的错剪,并防止斑马鱼胚胎中CUG重复序列的毒性。这项研究表明,毒性RNA的结构在控制神经肌肉疾病的发作中具有重要作用。

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