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Expanded CTG repeats trigger miRNA alterations in Drosophila that are conserved in myotonic dystrophy type 1 patients

机译:扩大的CTG重复序列触发果蝇中1型强直性肌营养不良患者保守的miRNA改变

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Myotonic dystrophy type 1 (DM1) is caused by the expansion of CTG repeats in the 3' untranslated region of the DMPK gene. Several missplicing events and transcriptional alterations have been described in DM1 patients. A large number of these defects have been reproduced in animal models expressing CTG repeats alone. Recent studies have also reported miRNA dysregulation in DM1 patients. In this work, a Drosophila model was used to investigate miRNA transcriptome alterations in the muscle, specifically triggered by CTG expansions. Twenty miRNAs were differentially expressed in CTG-expressing flies. Of these, 19 were down-regulated, whereas 1 was up-regulated. This trend was confirmed for those miRNAs conserved between Drosophila and humans (miR-1, miR-7 and miR-10) in muscle biopsies from DM1 patients. Consistently, at least seven target transcripts of these miRNAs were up-regulated in DM1 skeletal muscles. The mechanisms involved in dysregulation of miR-7 included a reduction of its primary precursor both in CTG-expressing flies and in DM1 patients. Additionally, a regulatory role for Muscleblind (Mbl) was also suggested for miR-1 and miR-7, as these miRNAs were down-regulated in flies where Mbl had been silenced. Finally, the physiological relevance of miRNA dysregulation was demonstrated for miR-10, since over-expression of this miRNA in Drosophila extended the lifespan of CTG-expressing flies. Taken together, our results contribute to our understanding of the origin and the role of miRNA alterations in DM1.
机译:1型强直性肌营养不良症(DM1)是由DMPK基因3'非翻译区中CTG重复序列的扩增引起的。在DM1患者中已描述了几种错配事件和转录改变。在仅表达CTG重复序列的动物模型中已复制了大量此类缺陷。最近的研究还报道了DM1患者的miRNA失调。在这项工作中,使用果蝇模型研究了肌肉中miRNA转录组的变化,特别是由CTG扩展触发的变化。在表达CTG的果蝇中差异表达20种miRNA。其中,有19个下调,而有1个上调。对于在DM1患者的肌肉活检中果蝇与人之间保守的那些miRNA(miR-1,miR-7和miR-10)已确认了这种趋势。一致地,这些miRNA的至少七个靶转录本在DM1骨骼肌中被上调。与miR-7失调有关的机制包括在表达CTG的果蝇和DM1患者中减少其主要前体。此外,还提出了针对miR-1和miR-7的Musblind(Mbl)的调节作用,因为这些miRNA在Mbl沉默的果蝇中被下调。最后,由于miR-10在果蝇中的过表达延长了表达CTG的果蝇的寿命,因此miR-10的生理相关性得到了证实。综上所述,我们的结果有助于我们了解DM1中miRNA改变的起源和作用。

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