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Dmpk gene deletion or antisense knockdown does not compromise cardiac or skeletal muscle function in mice

机译:DMPK基因删除或反义敲低度不会损害小鼠中的心脏或骨骼肌功能

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摘要

Myotonic dystrophy type 1 (DM1) is a genetic disorder in which dominant-active DM protein kinase (DMPK) transcripts accumulate in nuclear foci, leading to abnormal regulation of RNA processing. A leading approach to treat DM1 uses DMPK-targeting antisense oligonucleotides (ASOs) to reduce levels of toxic RNA. However, basal levels of DMPK protein are reduced by half in DM1 patients. This raises concern that intolerance for further DMPK loss may limit ASO therapy, especially since mice with Dmpk gene deletion reportedly show cardiac defects and skeletal myopathy. We re-examined cardiac and muscle function in mice with Dmpk gene deletion, and studied post-maturity knockdown using Dmpk-targeting ASOs in mice with heterozygous deletion. Contrary to previous reports, we found no effect of Dmpk gene deletion on cardiac or muscle function, when studied on two genetic backgrounds. In heterozygous knockouts, the administration of ASOs reduced Dmpk expression in cardiac and skeletal muscle by?>?90%, yet survival, electrocardiogram intervals, cardiac ejection fraction and muscle strength remained normal. The imposition of cardiac stress by pressure overload, or muscle stress by myotonia, did not unmask a requirement for DMPK. Our results support the feasibility and safety of using ASOs for post-transcriptional silencing of DMPK in muscle and heart.
机译:肌肌营养不良型1(DM1)是一种遗传障碍,其中主要活性DM蛋白激酶(DMPK)转录物在核心焦点中积聚,导致RNA加工的异常调节。治疗DM1的主要方法使用DMPK靶向反义寡核苷酸(ASOS)以减少有毒RNA水平。然而,DM1患者的DMPK蛋白的基础水平降低了一半。这提出了令人担忧进一步的DMPK损失的不耐受可能限制ASO治疗,特别是因为据报道,由于DMPK基因缺失的小鼠显示心脏缺陷和骨骼肌。我们用DMPK基因缺失重新检查小鼠中的心脏和肌肉功能,并使用杂合缺失的小鼠中的DMPK靶向ASOS研究了成熟后落后。与之前的报道相反,我们发现在两个遗传背景上研究时,我们发现DMPK基因缺失对心脏或肌肉功能的影响。在杂合的敲除,ASOS的给药在心脏和骨骼肌中的DMPK表达减少了?>?90%,生存,心电图间隔,心脏喷射分数和肌肉力量保持正常。通过压力过载施加心脏压力,或肌肌肌肌肌胁迫,并未揭示DMPK的要求。我们的结果支持使用ASOS在肌肉和心脏中使用ASOS的转录后沉默的可行性和安全性。

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