Elena Barbon, Mattia Ferrarese, Laetitia van Wittenberghe, Peggy Sanatine, Giuseppe Ronzitti, Fanny Collaud, Pasqualina Colella, Mirko Pinotti, Federico Mingozzi
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引用次数: 0
摘要
U1 小核 RNA(U1snRNA)的变体可以挽救致病的剪接突变。然而,由于无法获得针对特定突变的细胞和动物模型,因此对改良 U1snRNA 作为治疗工具的有效性和安全性的评估受到了限制。因此,我们利用超活性睡美人转座子系统(SB100X)在体外和体内将人因子 IX(hFIX)小基因整合到基因组 DNA 中。我们生成了稳定的 HEK293 细胞系和 C57BL/6 小鼠,它们都含有野生型(SChFIX-wt)或突变型(SChFIXex5-2C)的具有剪接能力的 hFIX 小基因。在这两种模型中,在血友病 B 患者中发现的 SChFIXex5-2C 变体都显示出以第 5 号外显子跳过为特征的异常剪接模式。因此,我们首次在基因组 DNA 的背景下测试了通过腺相关病毒(AAV)载体传递的 snRNA U1-fix9 的功效。通过这种方法,我们发现 hFIX mRNA 的正确剪接模式得到了挽救,从而导致了 hFIX 蛋白的表达。这些数据验证了 SB100X 是一种多功能工具,可用于快速生成人类基因突变模型、研究其在稳定 DNA 环境中的影响以及评估突变靶向治疗策略。
Transposon-mediated Generation of Cellular and Mouse Models of Splicing Mutations to Assess the Efficacy of snRNA-based Therapeutics.
Disease-causing splicing mutations can be rescued by variants of the U1 small nuclear RNA (U1snRNAs). However, the evaluation of the efficacy and safety of modified U1snRNAs as therapeutic tools is limited by the availability of cellular and animal models specific for a given mutation. Hence, we exploited the hyperactive Sleeping Beauty transposon system (SB100X) to integrate human factor IX (hFIX) minigenes into genomic DNA in vitro and in vivo. We generated stable HEK293 cell lines and C57BL/6 mice harboring splicing-competent hFIX minigenes either wild type (SChFIX-wt) or mutated (SChFIXex5-2C). In both models the SChFIXex5-2C variant, found in patients affected by Hemophilia B, displayed an aberrant splicing pattern characterized by exon 5 skipping. This allowed us to test, for the first time in a genomic DNA context, the efficacy of the snRNA U1-fix9, delivered with an adeno-associated virus (AAV) vector. With this approach, we showed rescue of the correct splicing pattern of hFIX mRNA, leading to hFIX protein expression. These data validate the SB100X as a versatile tool to quickly generate models of human genetic mutations, to study their effect in a stable DNA context and to assess mutation-targeted therapeutic strategies.
期刊介绍:
BMC Biochemistry is an open access journal publishing original peer-reviewed research articles in all aspects of biochemical processes, including the structure, function and dynamics of metabolic pathways, supramolecular complexes, enzymes, proteins, nucleic acids and small molecular components of organelles, cells and tissues. BMC Biochemistry (ISSN 1471-2091) is indexed/tracked/covered by PubMed, MEDLINE, BIOSIS, CAS, EMBASE, Scopus, Zoological Record, Thomson Reuters (ISI) and Google Scholar.