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肌营养不良蛋白外显子 8-50 框内缺失导致 DMD 表型。

In-Frame Deletion of Dystrophin Exons 8-50 Results in DMD Phenotype.

机构信息

Laboratory of Modeling and Therapy of Hereditary Diseases, Institute of Gene Biology Russian Academy of Sciences, Moscow 119334, Russia.

Marlin Biotech LLC, Sochi 354340, Russia.

出版信息

Int J Mol Sci. 2023 May 23;24(11):9117. doi: 10.3390/ijms24119117.

Abstract

Mutations that prevent the production of proteins in the gene cause Duchenne muscular dystrophy. Most frequently, these are deletions leading to reading-frame shift. The "reading-frame rule" states that deletions that preserve ORF result in a milder Becker muscular dystrophy. By removing several exons, new genome editing tools enable reading-frame restoration in DMD with the production of BMD-like dystrophins. However, not every truncated dystrophin with a significant internal loss functions properly. To determine the effectiveness of potential genome editing, each variant should be carefully studied in vitro or in vivo. In this study, we focused on the deletion of exons 8-50 as a potential reading-frame restoration option. Using the CRISPR-Cas9 tool, we created the novel mouse model DMDdel8-50, which has an in-frame deletion in the gene. We compared DMDdel8-50 mice to C57Bl6/CBA background control mice and previously generated DMDdel8-34 KO mice. We discovered that the shortened protein was expressed and correctly localized on the sarcolemma. The truncated protein, on the other hand, was unable to function like a full-length dystrophin and prevent disease progression. On the basis of protein expression, histological examination, and physical assessment of the mice, we concluded that the deletion of exons 8-50 is an exception to the reading-frame rule.

摘要

导致杜氏肌营养不良症的基因突变会阻止 基因产生蛋白质。这些突变最常见的是导致阅读框移位的缺失。“阅读框规则”指出,保留 ORF 的缺失会导致较轻的贝克型肌营养不良症。通过去除几个外显子,新的基因组编辑工具能够在 DMD 中恢复阅读框,产生类似 BMD 的肌营养不良蛋白。然而,并非每个具有显著内部缺失的截断肌营养不良蛋白都能正常发挥作用。为了确定潜在基因组编辑的有效性,每个变体都应在体外或体内进行仔细研究。在这项研究中,我们专注于删除外显子 8-50 作为潜在的阅读框恢复选项。我们使用 CRISPR-Cas9 工具创建了新型的 DMDdel8-50 小鼠模型,该模型在 基因中具有框架内缺失。我们将 DMDdel8-50 小鼠与 C57Bl6/CBA 背景对照小鼠和之前生成的 DMDdel8-34 KO 小鼠进行了比较。我们发现缩短的蛋白被表达并正确定位于肌膜。另一方面,截断的蛋白无法像全长肌营养不良蛋白一样发挥作用并阻止疾病进展。基于蛋白表达、组织学检查和小鼠的身体评估,我们得出结论,外显子 8-50 的缺失是阅读框规则的例外。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0475/10252864/c41aed5a871c/ijms-24-09117-g001.jpg

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