University of Lyon, University of Lyon1 Claude Bernard Lyon1, Institut NeuroMyoGene, CNRS UMR5310, INSERM U1217, Lyon, France.
Laboratoire de Cardiogénétique Moléculaire, Centre de Biologie et Pathologie Est, Hospices Civils de Lyon, F-69677, Bron, France.
Sci Rep. 2018 Apr 4;8(1):5618. doi: 10.1038/s41598-018-23918-x.
LMNA gene encodes lamins A and C, two major components of the nuclear lamina, a network of intermediate filaments underlying the inner nuclear membrane. Most of LMNA mutations are associated with cardiac and/or skeletal muscles defects. Muscle laminopathies include Emery-Dreifuss Muscular Dystrophy, Limb-Girdle Muscular Dystrophy 1B, LMNA-related Congenital Muscular Dystrophy and Dilated Cardiomyopathy with conduction defects. To identify potential alterations in signaling pathways regulating muscle differentiation in LMNA-mutated myoblasts, we used a previously described model of conditionally immortalized murine myoblasts: H-2K cell lines. Comparing gene expression profiles in wild-type and Lmna H-2K myoblasts, we identified two major alterations in the BMP (Bone Morphogenetic Protein) pathway: Bmp4 downregulation and Smad6 overexpression. We demonstrated that these impairments lead to Lmna myoblasts premature differentiation and can be rescued by downregulating Smad6 expression. Finally, we showed that BMP4 pathway defects are also present in myoblasts from human patients carrying different heterozygous LMNA mutations.
LMNA 基因编码核纤层蛋白 A 和 C,这是核纤层的两种主要成分,核纤层是位于内核膜下的中间丝网络。大多数 LMNA 突变与心脏和/或骨骼肌缺陷有关。肌肉层联蛋白病包括 Emery-Dreifuss 肌肉营养不良、肢带型肌肉营养不良 1B、LMNA 相关先天性肌肉营养不良和扩张型心肌病伴传导缺陷。为了鉴定调节 LMNA 突变肌母细胞中肌肉分化的信号通路中的潜在改变,我们使用了先前描述的条件永生化小鼠肌母细胞模型:H-2K 细胞系。比较野生型和 Lmna H-2K 肌母细胞的基因表达谱,我们在 BMP(骨形态发生蛋白)途径中发现了两个主要改变:Bmp4 下调和 Smad6 过表达。我们证明这些损伤导致 Lmna 肌母细胞过早分化,并可以通过下调 Smad6 表达来挽救。最后,我们表明携带不同杂合性 LMNA 突变的人类患者的肌母细胞也存在 BMP4 途径缺陷。