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Analysis of the functional consequences of targeted exon deletion in COL7A1 reveals prospects for dystrophic epidermolysis bullosa therapy

机译:对COL7A1中靶向外显子缺失的功能后果的分析揭示了营养不良性表皮松解性大疱性疗法的前景

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摘要

Genetically evoked deficiency of collagen VII causes dystrophic epidermolysis bullosa (DEB)—a debilitating disease characterized by chronic skin fragility and progressive fibrosis. Removal of exons carrying frame-disrupting mutations can reinstate protein expression in genetic diseases. The therapeutic potential of this approach is critically dependent on gene, protein, and disease intrinsic factors. Naturally occurring exon skipping in COL7A1, translating collagen VII, suggests that skipping of exons containing disease-causing mutations may be feasible for the treatment of DEB. However, despite a primarily in-frame arrangement of exons in the COL7A1 gene, no general conclusion of the aptitude of exon skipping for DEB can be drawn, since regulation of collagen VII functionality is complex involving folding, intra- and intermolecular interactions. To directly address this, we deleted two conceptually important exons located at both ends of COL7A1, exon 13, containing recurrent mutations, and exon 105, predicted to impact folding. The resulting recombinantly expressed proteins showed conserved functionality in biochemical and in vitro assays. Injected into DEB mice, the proteins promoted skin stability. By demonstrating functionality of internally deleted collagen VII variants, our study provides support of targeted exon deletion or skipping as a potential therapy to treat a large number of individuals with DEB.
机译:基因诱发的胶原蛋白VII缺乏会导致营养不良性大疱性表皮松解症(DEB),这是一种令人衰弱的疾病,其特征是慢性皮肤脆弱和进行性纤维化。去除带有破坏框架突变的外显子可以恢复遗传疾病中的蛋白质表达。这种方法的治疗潜力主要取决于基因,蛋白质和疾病内在因素。在COL7A1中自然发生的外显子跳跃(翻译胶原蛋白VII)表明,包含致病突变的外显子的跳跃对于DEB的治疗可能是可行的。然而,尽管在COL7A1基因中外显子主要在框内排列,但由于对胶原VII功能的调节涉及折叠,分子内和分子间相互作用,因此复杂,因此无法得出DEB跳过外显子能力的一般结论。为了直接解决这个问题,我们删除了位于COL7A1两端的两个在概念上重要的外显子,包含重复突变的外显子13和预测会影响折叠的外显子105。所得的重组表达蛋白在生化和体外测定中显示保守的功能。注射到DEB小鼠体内后,这些蛋白质促进了皮肤的稳定性。通过证明内部缺失的胶原蛋白VII变体的功能,我们的研究提供了靶向外显子缺失或跳跃的支持,作为治疗大量DEB个体的潜在疗法。

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