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Evaluating the effects of CELF1 deficiency in a mouse model of RNA toxicity

机译:在小鼠RNA毒性模型中评估CELF1缺乏的影响

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Myotonic dystrophy type 1 (DM1), the most common form of adult-onset muscular dystrophy, is caused by an expanded (CTG)_n repeat in the 3 untranslated region of the DM protein kinase (DMPK) gene. The toxic RNA transcripts produced from the mutant allele alter the function of RNA-binding proteins leading to the functional depletion of muscleblind-like (MBNL) proteins and an increase in steady state levels of CUG-BP1 (CUGBP-ETR-3 like factor , CELF1). The role of increased CELF1 in DM1 pathogenesis is well studied using genetically engineered mouse models. Also, as a potential therapeutic strategy, the benefits of increasing MBNL1 expression have recently been reported. However, the effect of reduction of CELF1 is not yet clear. In this study, we generated CELF1 knockout mice, which also carry an inducible toxic RNA transgene to test the effects of CELF1 reduction in RNA toxicity. We found that the absence of CELF1 did not correct splicing defects. It did however mitigate the increase in translational targets of CELF1 (MEF2A and C/EBP(beta)). Notably, we found that loss of CELF1 prevented deterioration of muscle function by the toxic RNA, and resulted in better muscle histopathology. These data suggest that while reduction of CELF1 may be of limited benefit with respect to DM1 -associated spli-ceopathy, it may be beneficial to the muscular dystrophy associated with RNA toxicity.
机译:成年型肌营养不良症最常见的形式是强直性肌营养不良1型(DM1),是由DM蛋白激酶(DMPK)基因的3个非翻译区中的(CTG)_n重复序列扩大引起的。突变等位基因产生的毒性RNA转录物会改变RNA结合蛋白的功能,从而导致肌盲样(MBNL)蛋白的功能耗竭,并增加CUG-BP1(CUGBP-ETR-3样因子, CELF1)。使用基因工程小鼠模型已经很好地研究了CELF1在DM1发病机理中的作用。另外,作为潜在的治疗策略,最近已经报道了增加MBNL1表达的益处。但是,减少CELF1的效果尚不清楚。在这项研究中,我们生成了CELF1基因敲除小鼠,该小鼠还携带可诱导的毒性RNA转基因,以测试CELF1降低RNA毒性的作用。我们发现缺少CELF1不能纠正拼接缺陷。但是,它确实减轻了CELF1(MEF2A和C /EBPβ)的翻译目标的增加。值得注意的是,我们发现CELF1的丢失阻止了有毒RNA导致肌肉功能的恶化,并导致了更好的肌肉组织病理学。这些数据表明,相对于与DM1相关的裂孔性病变,CELF1的减少可能具有有限的益处,但是对于与RNA毒性相关的肌营养不良症可能是有益的。

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