Pines Mark, Levi Oshrat, Genin Olga, Lavy Adi, Angelini Corrado, Allamand Valérie, Halevy Orna
Institute of Animal Sciences, Volcani Center, Bet Dagan, Israel.
Institute of Animal Sciences, Volcani Center, Bet Dagan, Israel.
Am J Pathol. 2017 Mar;187(3):654-664. doi: 10.1016/j.ajpath.2016.11.013. Epub 2017 Jan 9.
Fibrosis is the main complication of muscular dystrophies. We identified moesin, a member of the ezrin-radixin-moesin family, in dystrophic muscles of mice representing Duchenne and congenital muscular dystrophies (DMD and CMD, respectively) and dysferlinopathy, but not in the wild type. High levels of moesin were also observed in muscle biopsy specimens from DMD, Ullrich CMD, and merosin-deficient CMD patients, all of which present high levels of fibrosis. The myofibroblasts, responsible for extracellular matrix protein synthesis, and the macrophages infiltrating the dystrophic muscles were the source of moesin. Moesin-positive cells were embedded within the fibrotic areas between the myofibers adjacent to the collagen type I fibers. Radixin was also synthesized by the myofibroblasts, whereas ezrin colocalized with the myofiber membranes. In animal models and patients' muscles, part of the moesin was in its active phosphorylated form. Inhibition of fibrosis by halofuginone, an antifibrotic agent, resulted in a major decrease in moesin levels in the muscles of DMD and CMD mice. In summary, the results of this study may pave the way for exploiting moesin as a novel target for intervention in MDs, and as part of a battery of biomarkers to evaluate treatment success in preclinical studies and clinical trials.
纤维化是肌肉营养不良症的主要并发症。我们在分别代表杜氏肌营养不良症(DMD)和先天性肌营养不良症(CMD)以及肌膜蛋白病的小鼠营养不良肌肉中鉴定出埃兹蛋白-根蛋白-膜突蛋白家族成员膜突蛋白,但在野生型小鼠中未发现。在DMD、乌尔里希CMD和缺乏merosin的CMD患者的肌肉活检标本中也观察到高水平的膜突蛋白,所有这些患者都存在高水平的纤维化。负责细胞外基质蛋白合成的肌成纤维细胞以及浸润营养不良肌肉的巨噬细胞是膜突蛋白的来源。膜突蛋白阳性细胞嵌入与I型胶原纤维相邻的肌纤维之间的纤维化区域内。根蛋白也由肌成纤维细胞合成,而埃兹蛋白与肌纤维膜共定位。在动物模型和患者肌肉中,部分膜突蛋白呈活性磷酸化形式。抗纤维化药物常山酮对纤维化的抑制导致DMD和CMD小鼠肌肉中膜突蛋白水平大幅下降。总之本研究结果可能为将膜突蛋白作为干预肌肉营养不良症的新靶点以及作为评估临床前研究和临床试验中治疗成功与否的一系列生物标志物的一部分开辟道路。