D'Avila Francesca, Meregalli Mirella, Lupoli Sara, Barcella Matteo, Orro Alessandro, De Santis Francesca, Sitzia Clementina, Farini Andrea, D'Ursi Pasqualina, Erratico Silvia, Cristofani Riccardo, Milanesi Luciano, Braga Daniele, Cusi Daniele, Poletti Angelo, Barlassina Cristina, Torrente Yvan
Department of Health Sciences, Università degli Studi di Milano, via A. Rudinì 8, 20100, Milan, Italy.
Filarete Foundation, Viale Ortles, 22, 20100, Milan, Italy.
J Muscle Res Cell Motil. 2016 Jun;37(3):101-15. doi: 10.1007/s10974-016-9451-7. Epub 2016 Jul 21.
Myofibrillar myopathies (MFMs) are genetically heterogeneous dystrophies characterized by the disintegration of Z-disks and myofibrils and are associated with mutations in genes encoding Z-disk or Z-disk-related proteins. The c.626 C > T (p.P209L) mutation in the BAG3 gene has been described as causative of a subtype of MFM. We report a sporadic case of a 26-year-old Italian woman, affected by MFM with axonal neuropathy, cardiomyopathy, rigid spine, who carries the c.626 C > T mutation in the BAG3 gene. The patient and her non-consanguineous healthy parents and brother were studied with whole exome sequencing (WES) to further investigate the genetic basis of this complex phenotype. In the patient, we found that the BAG3 mutation is associated with variants in the NRAP and FHL1 genes that encode muscle-specific, LIM domain containing proteins. Quantitative real time PCR, immunohistochemistry and Western blot analysis of the patient's muscular biopsy showed the absence of NRAP expression and FHL1 accumulation in aggregates in the affected skeletal muscle tissue. Molecular dynamic analysis of the mutated FHL1 domain showed a modification in its surface charge, which could affect its capability to bind its target proteins. To our knowledge this is the first study reporting, in a BAG3 MFM, the simultaneous presence of genetic variants in the BAG3 and FHL1 genes (previously described as independently associated with MFMs) and linking the NRAP gene to MFM for the first time.
肌原纤维肌病(MFMs)是一类具有遗传异质性的营养不良症,其特征为Z盘和肌原纤维解体,并与编码Z盘或Z盘相关蛋白的基因突变有关。BAG3基因中的c.626 C>T(p.P209L)突变已被描述为一种MFMs亚型的致病原因。我们报告了一例散发的26岁意大利女性病例,她患有伴有轴索性神经病、心肌病、脊柱僵硬的MFMs,其BAG3基因携带c.626 C>T突变。对该患者及其非近亲的健康父母和兄弟进行了全外显子组测序(WES),以进一步研究这种复杂表型的遗传基础。在该患者中,我们发现BAG3突变与NRAP和FHL1基因的变异有关,这两个基因编码含肌肉特异性LIM结构域的蛋白。对患者肌肉活检组织进行的定量实时PCR、免疫组织化学和蛋白质印迹分析显示,在受影响的骨骼肌组织中,NRAP表达缺失且FHL1在聚集体中积累。对突变的FHL1结构域进行的分子动力学分析显示其表面电荷发生了改变,这可能会影响其与靶蛋白结合的能力。据我们所知,这是第一项在BAG3型MFMs中报道同时存在BAG3和FHL1基因的遗传变异(此前已被描述为独立与MFMs相关)并首次将NRAP基因与MFMs联系起来的研究。