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CRISPR-mediated Genome Editing Restores Dystrophin Expression and Function in mdx Mice

机译:CRISPR介导的基因组编辑恢复mdx小鼠中的肌营养不良蛋白表达和功能

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摘要

Duchenne muscular dystrophy (DMD) is a degenerative muscle disease caused by genetic mutations that lead to the disruption of dystrophin in muscle fibers. There is no curative treatment for this devastating disease. Clustered regularly interspaced short palindromic repeat/Cas9 (CRISPR/Cas9) has emerged as a powerful tool for genetic manipulation and potential therapy. Here we demonstrate that CRIPSR-mediated genome editing efficiently excised a 23-kb genomic region on the X-chromosome covering the mutant exon 23 in a mouse model of DMD, and restored dystrophin expression and the dystrophin-glycoprotein complex at the sarcolemma of skeletal muscles in live mdx mice. Electroporation-mediated transfection of the Cas9/gRNA constructs in the skeletal muscles of mdx mice normalized the calcium sparks in response to osmotic shock. Adenovirus-mediated transduction of Cas9/gRNA greatly reduced the Evans blue dye uptake of skeletal muscles at rest and after downhill treadmill running. This study provides proof evidence for permanent gene correction in DMD.
机译:Duchenne肌营养不良症(DMD)是由遗传突变引起的变性肌肉疾病,这种遗传突变导致肌纤维中肌营养不良蛋白的破坏。对于这种破坏性疾病,尚无治疗方法。簇状规则间隔的短回文重复序列/ Cas9(CRISPR / Cas9)已经成为基因操作和潜在疗法的强大工具。在这里,我们证明CRIPSR介导的基因组编辑有效地切除了DMD小鼠模型中覆盖突变外显子23的X染色体上的23 kb基因组区域,并恢复了肌营养不良蛋白表达和肌营养不良蛋白-糖蛋白复合物在骨骼肌的肌膜处在活的mdx小鼠中。在mdx小鼠骨骼肌中电穿孔介导的Cas9 / gRNA构建体转染使响应于渗透性休克的钙火花正常化。腺病毒介导的Cas9 / gRNA的转导大大降低了静止和下坡跑步机跑步后骨骼肌的Evans蓝染料摄取。这项研究为DMD中的永久基因校正提供了证据。

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