1Department of Human Genetics, Leiden University Medical Center, PO Box 9600, 2300 RC Leiden, The Netherlands.
FASEB J. 2013 Dec;27(12):4909-16. doi: 10.1096/fj.13-232025. Epub 2013 Aug 23.
Duchenne and Becker muscular dystrophies are caused by out-of-frame and in-frame mutations, respectively, in the dystrophin encoding DMD gene. Molecular therapies targeting the precursor-mRNA are in clinical trials and show promising results. These approaches will depend on the stability and expression levels of dystrophin mRNA in skeletal muscles and heart. We report that the DMD gene is more highly expressed in heart than in skeletal muscles, in mice and humans. The transcript mutated in the mdx mouse model shows a 5' to 3' imbalance compared with that of its wild-type counterpart and reading frame restoration via antisense-mediated exon skipping does not correct this event. We also report significant transcript instability in 22 patients with Becker dystrophy, clarifying the fact that transcript imbalance is not caused by premature nonsense mutations. Finally, we demonstrate that transcript stability, rather than transcriptional rate, is an important determinant of dystrophin protein levels in patients with Becker dystrophy. We suggest that the availability of the complete transcript is a key factor to determine protein abundance and thus will influence the outcome of mRNA-targeting therapies.
杜氏肌营养不良症和贝克肌营养不良症分别是由肌营养不良蛋白编码基因 DMD 中的移码和框架内突变引起的。针对前体 mRNA 的分子疗法正在临床试验中,显示出有前景的结果。这些方法将取决于骨骼肌和心脏中肌营养不良蛋白 mRNA 的稳定性和表达水平。我们报告说,在小鼠和人类中,DMD 基因在心脏中的表达水平高于骨骼肌。与野生型相比,mdx 小鼠模型中突变的转录本显示出 5' 到 3' 的不平衡,并且通过反义介导的外显子跳跃进行读框恢复并不能纠正这一事件。我们还在 22 名贝克型肌营养不良症患者中报告了明显的转录本不稳定性,澄清了转录本失衡不是由过早的无意义突变引起的事实。最后,我们证明在贝克型肌营养不良症患者中,转录本稳定性而不是转录速率是决定肌营养不良蛋白水平的重要因素。我们认为完整转录本的可用性是决定蛋白质丰度的关键因素,因此将影响针对 mRNA 的治疗方法的结果。