A nonviral vector for highly efficient site-specific integration would be desirable for many applications in transgenesis, including gene therapy. In this study we directly compared the genomic integration efficiencies of piggyBac, hyperactive Sleeping Beauty (SB11), Tol2, and Mos1 in four mammalian cell lines. piggyBac demonstrated significantly higher transposition activity in all cell lines whereas Mos1 had no activity. Furthermore, piggyBac transposase coupled to the GAL4 DNA-binding domain retains transposition activity whereas similarly manipulated gene products of Tol2 and SB11 were inactive. The high transposition activity of piggyBac and the flexibility for molecular modification of its transposase suggest the possibility of using it routinely for mammalian transgenesis.

译文

用于高效位点特异性整合的非病毒载体对于包括基因治疗在内的许多转基因应用都是理想的。在这项研究中,我们直接比较了piggyBac,多动睡美人 (SB11),Tol2和Mos1在四种哺乳动物细胞系中的基因组整合效率。piggyBac在所有细胞系中显示出显着更高的转座活性,而Mos1则没有活性。此外,与GAL4 DNA结合结构域偶联的piggyBac转座酶保留转座活性,而Tol2和SB11的类似操纵的基因产物无活性。piggyBac的高转座活性及其转座酶分子修饰的灵活性表明,有可能将其常规用于哺乳动物的转基因。

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