Transposons, as non-viral integration vectors, provide a secure and efficient method for stable gene delivery. In this study, we have discovered Mage (MG), a novel member of the piggyBac(PB) family, which exhibits strong transposability in a variety of mammalian cells and primary T cells. The wild-type MG showed a weaker insertion preference for near genes, transcription start sites (TSS), CpG islands, and DNaseI hypersensitive sites in comparison to PB, approaching the random insertion pattern. Utilizing in silico virtual screening and feasible combinatorial mutagenesis in vitro, we effectively produced the hyperactive MG transposase (hyMagease). This variant boasts a transposition rate 60% greater than its native counterpart without significantly altering its insertion pattern. Furthermore, we applied the hyMagease to efficiently deliver chimeric antigen receptor (CAR) into T cells, leading to stable high-level expression and inducing significant anti-tumor effects both in vitro and in xenograft mice models. These findings provide a compelling tool for gene transfer research, emphasizing its potential and prospects in the domains of genetic engineering and gene therapy.
Mage transposon: a novel gene delivery system for mammalian cells.
Mage转座子:一种用于哺乳动物细胞的新型基因传递系统
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作者:Tian Jinghan, Tong Doudou, Li Zhendong, Wang Erqiang, Yu Yifei, Lv Hangya, Hu Zhendan, Sun Fang, Wang Guoping, He Min, Xia Tian
| 期刊: | Nucleic Acids Research | 影响因子: | 13.100 |
| 时间: | 2024 | 起止号: | 2024 Mar 21; 52(5):2724-2739 |
| doi: | 10.1093/nar/gkae048 | 研究方向: | 细胞生物学 |
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