Department Reproduction and Genetics, Vrije Universiteit Brussel, Brussels 1090, Belgium.
Department of Molecular Genetics and Microbiology, Center for NeuroGenetics and the Genetics Institute, University of Florida, College of Medicine, Gainesville, FL 32610, USA.
Biol Open. 2022 Jan 15;11(1). doi: 10.1242/bio.058978. Epub 2022 Jan 12.
Skeletal muscle tissue is severely affected in myotonic dystrophy type 1 (DM1) patients, characterised by muscle weakness, myotonia and muscle immaturity in the most severe congenital form of the disease. Previously, it was not known at what stage during myogenesis the DM1 phenotype appears. In this study we differentiated healthy and DM1 human embryonic stem cells to myoblasts and myotubes and compared their differentiation potential using a comprehensive multi-omics approach. We found myogenesis in DM1 cells to be abnormal with altered myotube generation compared to healthy cells. We did not find differentially expressed genes between DM1 and non-DM1 cell lines within the same developmental stage. However, during differentiation we observed an aberrant inflammatory response and increased CpG methylation upstream of the CTG repeat at the myoblast level and RNA mis-splicing at the myotube stage. We show that early myogenesis modelled in hESC reiterates the early developmental manifestation of DM1.
骨骼肌组织在 1 型肌强直性营养不良(DM1)患者中受到严重影响,其特征是肌肉无力、肌强直和肌肉不成熟,在该病最严重的先天性形式中尤为明显。此前,人们尚不清楚 DM1 表型出现在肌发生的哪个阶段。在这项研究中,我们将健康和 DM1 人类胚胎干细胞分化为成肌细胞和肌管,并使用全面的多组学方法比较它们的分化潜力。我们发现 DM1 细胞的肌发生异常,与健康细胞相比,肌管生成减少。我们没有在同一发育阶段的 DM1 和非 DM1 细胞系之间发现差异表达的基因。然而,在分化过程中,我们在成肌细胞水平观察到异常的炎症反应和 CTG 重复上游的 CpG 甲基化增加,以及肌管阶段的 RNA 剪接错误。我们表明,在 hESC 中模拟的早期肌发生重复了 DM1 的早期发育表现。