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首页> 外文期刊>Human Molecular Genetics >Strand bias in oligonucleotide-mediated dystrophin gene editing.
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Strand bias in oligonucleotide-mediated dystrophin gene editing.

机译:寡核苷酸介导的肌营养不良蛋白基因编辑中的链偏向。

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Defects in the dystrophin gene cause the severe degenerative muscle disorder, Duchenne muscular dystrophy (DMD). Among the gene therapy approaches to DMD under investigation, a gene editing approach using oligonucleotide vectors has yielded encouraging results. Here, we extend our studies of gene editing with self-pairing, chimeric RNA/DNA oligonucleotides (RDOs) to the use of oligodeoxynucleotides (ODNs) to correct point mutations in the dystrophin gene. The ODN vectors offer many advantages over the RDO vectors, and we compare the targeting efficiencies in the mdx(5cv) mouse model of DMD. We found that ODNs targeted to either the transcribed or the non-transcribed strand of the dystrophin gene were capable of inducing gene repair, with efficiencies comparable to that seen with RDO vectors. Oligonucleotide-mediated repair was demonstrated at the genomic, mRNA and protein levels in muscle cells both in vitro and in vivo, and the correction was stable over time. Interestingly, there was a strand bias observed with the ODNs, with more efficient correction of the non-transcribed strand even though the dystrophin gene is not transcribed in proliferating myoblasts. This finding demonstrates that strand bias of ODN-mediated gene repair is likely to be due to the specific sequence of the target gene in addition to any effects of transcription. A better understanding of how the efficiency of gene editing relates to the target sequence will offer the opportunity for rational oligonucleotide design for further development of this elegant approach to gene therapy for DMD and other genetic diseases.
机译:肌营养不良蛋白基因的缺陷会导致严重的变性肌肉疾病,杜氏肌营养不良症(DMD)。在研究中的DMD基因治疗方法中,使用寡核苷酸载体的基因编辑方法产生了令人鼓舞的结果。在这里,我们将使用自配对嵌合RNA / DNA寡核苷酸(RDO)进行基因编辑的研究扩展到使用寡脱氧核苷酸(ODN)来纠正肌营养不良蛋白基因中的点突变。 ODN载体比RDO载体具有许多优势,我们比较了DMD的mdx(5cv)小鼠模型的靶向效率。我们发现,针对肌营养不良蛋白基因的转录或非转录链的ODN能够诱导基因修复,其效率可与RDO载体相媲美。在体外和体内,均在肌肉细胞的基因组,mRNA和蛋白质水平上证实了寡核苷酸介导的修复,并且校正随时间稳定。有趣的是,在ODN中观察到了链偏向,即使在增生的成肌细胞中抗肌萎缩蛋白基因未转录,也能更有效地校正非转录链。这一发现表明,ODN介导的基因修复的链偏向可能是由于靶基因的特定序列以及转录的任何作用所致。对基因编辑效率与靶序列之间关系的更好理解将为合理的寡核苷酸设计提供机会,以进一步开发这种用于DMD和其他遗传疾病的基因治疗的优雅方法。

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