Boston Biomedical Research Institute, Watertown, MA 02472, USA.
Hum Mol Genet. 2012 Oct 15;21(20):4419-30. doi: 10.1093/hmg/dds284. Epub 2012 Jul 13.
Facioscapulohumeral muscular dystrophy (FSHD), the most prevalent myopathy afflicting both children and adults, is predominantly associated with contractions in the 4q35-localized macrosatellite D4Z4 repeat array. Recent studies have proposed that FSHD pathology is caused by the misexpression of the DUX4 (double homeobox 4) gene resulting in production of a pathogenic protein, DUX4-FL, which has been detected in FSHD, but not in unaffected control myogenic cells and muscle tissue. Here, we report the analysis of DUX4 mRNA and protein expression in a much larger collection of myogenic cells and muscle biopsies derived from biceps and deltoid muscles of FSHD affected subjects and their unaffected first-degree relatives. We confirmed that stable DUX4-fl mRNA and protein were expressed in myogenic cells and muscle tissues derived from FSHD affected subjects, including several genetically diagnosed adult FSHD subjects yet to show clinical manifestations of the disease in the assayed muscles. In addition, we report DUX4-fl mRNA and protein expression in muscle biopsies and myogenic cells from genetically unaffected relatives of the FSHD subjects, although at a significantly lower frequency. These results establish that DUX4-fl expression per se is not sufficient for FSHD muscle pathology and indicate that quantitative modifiers of DUX4-fl expression and/or function and family genetic background are determinants of FSHD muscle disease progression.
面肩肱型肌营养不良症(FSHD)是一种最常见的影响儿童和成人的肌肉疾病,主要与 4q35 定位的宏卫星 D4Z4 重复阵列的收缩有关。最近的研究表明,FSHD 病理学是由 DUX4(双同源盒 4)基因的错误表达引起的,导致产生一种致病蛋白 DUX4-FL,该蛋白已在 FSHD 中检测到,但在未受影响的对照肌细胞和肌肉组织中未检测到。在这里,我们报告了对来自 FSHD 受影响受试者的肱二头肌和三角肌的肌源性细胞和肌肉活检中 DUX4 mRNA 和蛋白表达的更大量分析。我们证实,稳定的 DUX4-fl mRNA 和蛋白在源自 FSHD 受影响受试者的肌源性细胞和肌肉组织中表达,包括几个尚未在检测肌肉中表现出疾病临床症状的遗传性诊断为成年 FSHD 受试者。此外,我们报告了来自 FSHD 受试者的无遗传影响亲属的肌肉活检和肌源性细胞中的 DUX4-fl mRNA 和蛋白表达,尽管频率明显较低。这些结果表明 DUX4-fl 表达本身不足以引起 FSHD 肌肉病理学,并表明 DUX4-fl 表达和/或功能的定量修饰因子和家族遗传背景是 FSHD 肌肉疾病进展的决定因素。
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