Murphy Kelly, Zhang Aiping, Bittel Adam J, Chen Yi-Wen
Institute for Biomedical Sciences, The George Washington University, Washington, DC 20037, USA.
Center for Genetic Medicine Research, Children's National Hospital, Washington, DC 20010, USA.
J Pers Med. 2023 Jun 25;13(7):1040. doi: 10.3390/jpm13071040.
Facioscapulohumeral muscular dystrophy (FSHD) is caused by the aberrant expression of the double homeobox 4 () gene. The mouse model carries an inverted human transgene which has leaky transgene expression at a very low level. No overt muscle pathology was reported before 16 weeks. The purpose of this study is to track and characterize the phenotypes for a longer period, up to one year old. In addition, transcriptomic changes in the muscles of 2-month-old mice were investigated using RNA-seq. The results showed that male mice developed more severe phenotypes and at a younger age in comparison to the female mice. These include lower body and muscle weight, and muscle weakness measured by grip strength measurements. Muscle pathological changes were observed at older ages, including fibrosis, decreased size of type IIa and IIx myofibers, and the development of aggregates containing TDP-43 in type IIb myofibers. Muscle transcriptomic data identified early molecular changes in biological pathways regulating circadian rhythm and adipogenesis. The study suggests a slow progressive change in molecular and muscle phenotypes in response to the low level of DUX4 expression in the mice.
面肩肱型肌营养不良症(FSHD)由双同源盒4(DUX4)基因的异常表达引起。该小鼠模型携带一个倒置的人类DUX4转基因,其转基因表达水平极低且有渗漏。在16周之前未报告明显的肌肉病理学变化。本研究的目的是对DUX4表型进行更长时间的追踪和表征,直至一岁。此外,使用RNA测序研究了2月龄小鼠肌肉中的转录组变化。结果表明,与雌性小鼠相比,雄性DUX4小鼠出现更严重的表型且发病年龄更小。这些表型包括体重和肌肉重量降低,以及通过握力测量所测得肌肉无力。在较年长时观察到肌肉病理变化,包括纤维化、IIa型和IIx型肌纤维尺寸减小,以及IIb型肌纤维中含有TDP - 43的聚集体形成。肌肉转录组数据确定了调节昼夜节律和脂肪生成的生物学途径中的早期分子变化。该研究表明,由于DUX4小鼠中DUX4表达水平较低,分子和肌肉表型会发生缓慢的渐进性变化。