Spencer M J, Guyon J R, Sorimachi H, Potts A, Richard I, Herasse M, Chamberlain J, Dalkilic I, Kunkel L M, Beckmann J S
Department of Pediatrics, University of California, Los Angeles, CA 90095, USA.
Proc Natl Acad Sci U S A. 2002 Jun 25;99(13):8874-9. doi: 10.1073/pnas.132269299. Epub 2002 Jun 19.
Limb-girdle muscular dystrophy, type 2A (LGMD 2A), is an autosomal recessive disorder that causes late-onset muscle-wasting, and is due to mutations in the muscle-specific protease calpain 3 (C3). Although LGMD 2A would be a feasible candidate for gene therapy, the reported instability of C3 in vitro raised questions about the potential of obtaining a stable, high-level expression of C3 from a transgene in vivo. We have generated transgenic (Tg) mice with muscle-specific overexpression of full-length C3 or C3 isoforms, which arise from alternative splicing, to test whether stable expression of C3 transgenes could occur in vivo. Unexpectedly, we found that full-length C3 can be overexpressed at high levels in vivo, without toxicity. In addition, we found that Tg expressing C3 lacking exon 6, an isoform expressed embryonically, have muscles that resemble regenerating or developing muscle. Tg expressing C3 lacking exon 15 shared this morphology in the soleus, but not other muscles. Assays of inflammation or muscle membrane damage indicated that the Tg muscles were not degenerative, suggesting that the immature muscle resulted from a developmental block rather than degeneration and regeneration. These studies show that C3 can be expressed stably in vivo from a transgene, and indicate that alternatively spliced C3 isoforms should not be used in gene-therapy applications because they impair proper muscle development.
2A型肢带型肌营养不良症(LGMD 2A)是一种常染色体隐性疾病,会导致迟发性肌肉萎缩,它是由肌肉特异性蛋白酶钙蛋白酶3(C3)发生突变引起的。尽管LGMD 2A可能是基因治疗的一个可行候选对象,但据报道C3在体外不稳定,这引发了人们对于能否在体内从转基因中获得稳定的、高水平C3表达的疑问。我们构建了肌肉特异性过表达全长C3或由可变剪接产生的C3异构体的转基因(Tg)小鼠,以测试C3转基因在体内是否能稳定表达。出乎意料的是,我们发现全长C3在体内能够高水平过表达且无毒。此外,我们发现表达缺少外显子6的C3(一种胚胎期表达的异构体)的Tg小鼠的肌肉类似于正在再生或发育的肌肉。表达缺少外显子15的C3的Tg小鼠在比目鱼肌中也有这种形态,但在其他肌肉中没有。炎症或肌膜损伤检测表明,Tg小鼠的肌肉没有发生退化,这表明未成熟的肌肉是由发育阻滞而非退化和再生导致的。这些研究表明,C3可以从转基因在体内稳定表达,并表明可变剪接的C3异构体不应用于基因治疗,因为它们会损害肌肉的正常发育。