Department of Genetics, Cell Biology and Development, University of Minnesota, Minneapolis, MN, USA.
Hum Mol Genet. 2012 Nov 1;21(21):4645-54. doi: 10.1093/hmg/dds306. Epub 2012 Jul 30.
Myotonic dystrophy (DM) is a multisystemic disease caused by CTG or CCTG expansion mutations. There is strong evidence that DM1 CUG and DM2 CCUG expansion transcripts sequester muscleblind-like (MBNL) proteins and that loss of MBNL function causes alternative splicing abnormalities that contribute to disease. Because MBNL1 loss is thought to play an important role in disease and localized AAV delivery of MBNL1 partially rescues skeletal muscle pathology in DM mice, there is strong interest in MBNL1 overexpression as a therapeutic strategy. We developed the first transgenic MBNL1 overexpression mouse model (MBNL1-OE) to test the safety and efficacy of multisystemic MBNL1 overexpression. First, we demonstrate that MBNL1 overexpression is generally well-tolerated in skeletal muscle. Second, we show the surprising result that premature shifts in alternative splicing of MBNL1-regulated genes in multiple organ systems are compatible with life and do not cause embryonic lethality. Third, we show for the first time that early and long-term MBNL1 overexpression prevents CUG-induced myotonia, myopathy and alternative splicing abnormalities in DM1 mice. In summary, MBNL1 overexpression may be a valuable strategy for treating the skeletal muscle features of DM.
肌强直性营养不良(DM)是一种多系统疾病,由 CTG 或 CCTG 扩展突变引起。有强有力的证据表明,DM1 CUG 和 DM2 CCUG 扩展转录本隔离肌肉盲样(MBNL)蛋白,并且 MBNL 功能的丧失导致导致疾病的选择性剪接异常。由于认为 MBNL1 的缺失在疾病中起重要作用,并且局部 AAV 递送 MBNL1 部分挽救了 DM 小鼠的骨骼肌病理学,因此作为一种治疗策略,MBNL1 的过表达具有强烈的兴趣。我们开发了第一个转基因 MBNL1 过表达小鼠模型(MBNL1-OE),以测试多系统 MBNL1 过表达的安全性和有效性。首先,我们证明 MBNL1 的过表达在骨骼肌中通常耐受良好。其次,我们展示了一个令人惊讶的结果,即在多个器官系统中,MBNL1 调节基因的选择性剪接的过早改变与生命兼容,并且不会导致胚胎致死性。第三,我们首次表明,早期和长期的 MBNL1 过表达可预防 DM1 小鼠中 CUG 诱导的肌强直、肌病和选择性剪接异常。总之,MBNL1 的过表达可能是治疗 DM 的骨骼肌特征的一种有价值的策略。