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Transcriptional and post-transcriptional impact of toxic RNA in myotonic dystrophy

机译:毒性RNA在强直性营养不良中的转录和转录后影响

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摘要

Myotonic dystrophy type 1 (DM1) is an RNA dominant disease in which mutant transcripts containing an expanded CUG repeat (CUGexp) cause muscle dysfunction by interfering with biogenesis of other mRNAs. The toxic effects of mutant RNA are mediated partly through sequestration of splicing regulator Muscleblind-like 1 (Mbnl1), a protein that binds to CUGexp RNA. A gene that is prominently affected encodes chloride channel 1 (Clcn1), resulting in hyperexcitability of muscle (myotonia). To identify DM1-affected genes and study mechanisms for dysregulation, we performed global mRNA profiling in transgenic mice that express CUGexp RNA, when compared with Mbnl1 knockout and Clcn1 null mice. We found that the majority of changes induced by CUGexp RNA in skeletal muscle can be explained by reduced activity of Mbnl1, including many changes that are secondary to myotonia. The pathway most affected comprises genes involved in calcium signaling and homeostasis. Some effects of CUGexp RNA on gene expression are caused by abnormal alternative splicing or downregulation of Mbnl1-interacting mRNAs. However, several of the most highly dysregulated genes showed altered transcription, as indicated by parallel changes of the corresponding pre-mRNAs. These results support the idea that trans-dominant effects of CUGexp RNA on gene expression in this transgenic model may occur at the level of transcription, RNA processing and mRNA decay, and are mediated mainly but not entirely through sequestration of Mbnl1.
机译:1型强直性肌营养不良症(DM1)是一种RNA显性疾病,其中包含扩展的CUG重复序列(CUG exp )的突变体转录本通过干扰其他mRNA的生物发生而导致肌肉功能障碍。突变RNA的毒性作用部分是通过隔离剪接调节剂Muscleblind-like 1(Mbnl1)介导的,该蛋白与CUG exp RNA结合。受到显着影响的基因编码氯通道1(Clcn1),导致肌肉过度兴奋(肌强直)。为了鉴定受DM1影响的基因并研究失调的机制,我们与Mbnl1基因敲除小鼠和Clcn1基因缺失小鼠相比,在表达CUG exp RNA的转基因小鼠中进行了全局mRNA分析。我们发现骨骼肌中CUG exp RNA诱导的大多数变化可以通过Mbnl1活性降低来解释,包括许多继发于肌强直的变化。受影响最大的途径包括参与钙信号传导和体内平衡的基因。 CUG exp RNA对基因表达的某些影响是由与Mbnl1相互作用的mRNA的异常交替剪接或下调引起的。然而,一些高度失调的基因显示出转录改变,如相应的前mRNA的平行变化所表明的。这些结果支持了这样的想法:在这个转基因模型中,CUG exp RNA对基因表达的反式作用可能发生在转录,RNA加工和mRNA衰减的水平,并且主要但不是完全通过隔离Mbnl1。

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