评估c.1289-2A>G Desmin基因突变患者成纤维细胞的致肌力

Nilüfer Düz, Şeyda Ünsal, Sevim Eerdem-Özdamar, Pervin Dinçer
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摘要

超罕见的 DES c.1289-2A>G 突变导致 Desmin 尾部结构域插入 48 个碱基对,与晚发性 MFM1(肌纤维肌病-1;OMIM 编号;601419)有关,并表现出独特的病理特征。尽管该病有持续的表达和细胞骨架的完整性,但肌肉活检结果却显示出肌营养不良的特征,其机制尚不清楚。深入了解与 Desmin 相关的 MFM1 的分子机制可提高我们对该疾病病理生理学的认识和理解。在本研究中,我们旨在通过评估 MyoD 诱导的患者来源成纤维细胞的肌生成能力来研究病理表型。 在对未受影响的成纤维细胞和患者来源的成纤维细胞进行永生化和肌转化后,我们在分化后第5天分析了突变组和对照组的致肌力。这项分析包括在MyoD诱导后用MF20抗体和DAPI对细胞进行染色。 我们采用了六种参数来量化核外细胞和肌管的特性,揭示了c.1289-2A>G突变体细胞的成肌分化受损,表现为融合指数降低和成肌特征明显。总之,我们的初步研究结果表明了表型异常,并提示 DES c.1289-2A>G 突变与受影响个体的延迟成熟和 MFM 之间存在关联。 我们的研究结果表明,Desmin 在肌肉细胞的成肌成熟过程中起着重要作用。要了解患者成纤维细胞肌转化过程中转录组的变化,还需要进一步的研究。
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Assessment of myogenic potency in patient-derived fibroblasts with c.1289-2A>G Desmin mutation
The ultra-rare DES c.1289-2A>G mutation, resulting in a 48-base pair insertion in the Desmin tail domain, is associated with late-onset MFM1 (myofibrillar myopathy-1; OMIM number; 601419) and exhibits distinctive pathological features. Despite sustained expression and cytoskeletal integrity, muscle biopsies reveal dystrophic characteristics through an unidentified mechanism. A deeper understanding of the molecular mechanisms underlying Desmin-related MFM1 could enhance our perspective and comprehension of the disease’s pathophysiology. In this study, we aimed to investigate the pathological phenotype by assessing the myogenic potency of MyoD-induced patient-derived fibroblasts. Following the immortalization and myoconversion of unaffected and patient-derived fibroblast cells, we analyzed the myogenic potency of the mutant and control groups on day 5 post-differentiation. This analysis involved staining cells with MF20 antibody and DAPI after MyoD induction. Employing six parameters to quantify extra nuclei and myotube properties, we unveil impaired myogenic differentiation in c.1289-2A>G mutant cells, as evidenced by a compromised fusion index and distinctive myogenic features. In summary, our preliminary findings indicate phenotypic abnormalities and suggest an association between the DES c.1289-2A>G mutation and delayed maturation and MFM in affected individuals. Our results indicate a significant involvement of Desmin in the myogenic maturation of muscle cells. Further investigation is required to understand the changes in the transcriptome during the myoconversion of patient-derived fibroblasts.
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