Mislocalization of SMN from the I-band and M-band in human skeletal myofibers in spinal muscular atrophy associates with primary structural alterations of the sarcomere

被引:11
作者
Berciano, Maria T. [1 ,2 ,3 ]
Castillo-Iglesias, Maria S. [4 ]
Fernando Val-Bernal, J. [5 ]
Lafarga, Vanesa [6 ]
Rodriguez-Rey, Jose C. [1 ]
Lafarga, Miguel [2 ,3 ,4 ]
Tapia, Olga [2 ,3 ,7 ]
机构
[1] Univ Cantabria IDIVAL, Dept Biol Mol, Santander, Spain
[2] Inst Invest Sanitaria Valdecilla IDIVAL, Santander, Spain
[3] Ctr Invest Biomed Red Enfermedades Neurodegenerat, Santander, Spain
[4] Univ Cantabria IDIVAL, Dept Anat & Biol Celular, Santander, Spain
[5] Univ Cantabria IDIVAL, Dept Ciencias Med & Quirurg, Unidad Patol, Santander, Spain
[6] Ctr Nacl Invest Oncol CNIO, Madrid, Spain
[7] Univ Europea Atlantic, Santander, Spain
关键词
Spinal muscular atrophy; SMN; Skeletal myofibers; Myofibrils; Sarcomere; M-band; I-band; MOTOR-NEURON PROTEIN; CAJAL BODIES; MOLECULAR-MECHANISMS; CONGENITAL MYOPATHY; CARDIAC DEFECTS; GENE-PRODUCT; MUSCLE; SURVIVAL; DISEASE; COMPLEX;
D O I
10.1007/s00441-020-03236-3
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Spinal muscular atrophy (SMA) is caused by a deletion or mutation of the survival motor neuron 1 (SMN1) gene. Reduced SMN levels lead to motor neuron degeneration and muscular atrophy. SMN protein localizes to the cytoplasm and Cajal bodies. Moreover, in myofibrils fromDrosophilaand mice, SMN is a sarcomeric protein localized to the Z-disc. Although SMN participates in multiple functions, including the biogenesis of spliceosomal small nuclear ribonucleoproteins, its role in the sarcomere is unclear. Here, we analyzed the sarcomeric organization of SMN in human control and type I SMA skeletal myofibers. In control sarcomeres, we demonstrate that human SMN is localized to the titin-positive M-band and actin-positive I-band, and to SMN-positive granules that flanked the Z-discs. Co-immunoprecipitation assays revealed that SMN interacts with the sarcomeric protein actin, alpha-actinin, titin, and profilin2. In the type I SMA muscle, SMN levels were reduced, and atrophic (denervated) and hypertrophic (nondenervated) myofibers coexisted. The hypertrophied myofibers, which are potential primary targets of SMN deficiency, exhibited sites of focal or segmental alterations of the actin cytoskeleton, where the SMN immunostaining pattern was altered. Moreover, SMN was relocalized to the Z-disc in overcontracted minisarcomeres from hypertrophic myofibers. We propose that SMN could have an integrating role in the molecular components of the sarcomere. Consequently, low SMN levels might impact the normal sarcomeric architecture, resulting in the disruption of myofibrils found in SMA muscle. This primary effect might be independent of the neurogenic myopathy produced by denervation and contribute to pathophysiology of the SMA myopathy.
引用
收藏
页码:461 / 478
页数:18
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