Key Laboratory of Regenerative Biology, South China Institute for Stem Cell Biology and Regenerative Medicine, Chinese Academy of Sciences, Guangzhou, China.
PLoS One. 2011;6(5):e19986. doi: 10.1371/journal.pone.0019986. Epub 2011 May 13.
Multiple genetic modifications in pigs can essentially benefit research on agriculture, human disease and xenotransplantation. Most multi-transgenic pigs have been produced by complex and time-consuming breeding programs using multiple single-transgenic pigs. This study explored the feasibility of producing multi-transgenic pigs using the viral 2A peptide in the light of previous research indicating that it can be utilized for multi-gene transfer in gene therapy and somatic cell reprogramming. A 2A peptide-based double-promoter expression vector that mediated the expression of four fluorescent proteins was constructed and transfected into primary porcine fetal fibroblasts. Cell colonies (54.3%) formed under G418 selection co-expressed the four fluorescent proteins at uniformly high levels. The reconstructed embryos, which were obtained by somatic cell nuclear transfer and confirmed to express the four fluorescent proteins evenly, were transplanted into seven recipient gilts. Eleven piglets were delivered by two gilts, and seven of them co-expressed the four fluorescent proteins at equivalently high levels in various tissues. The fluorescence intensities were directly observed at the nose, hoof and tongue using goggles. The results suggest that the strategy of combining the 2A peptide and double promoters efficiently mediates the co-expression of the four fluorescent proteins in pigs and is hence a promising methodology to generate multi-transgenic pigs by a single nuclear transfer.
多个基因修饰的猪可以从根本上受益于农业研究、人类疾病和异种移植。大多数多转基因猪是通过使用多个单转基因猪的复杂和耗时的繁殖计划生产的。本研究探讨了利用病毒 2A 肽生产多转基因猪的可行性,因为之前的研究表明,它可以用于基因治疗和体细胞核重编程中的多基因转移。构建了一个基于 2A 肽的双启动子表达载体,该载体介导四种荧光蛋白的表达,并转染到原代猪胎儿成纤维细胞中。在 G418 选择下形成的细胞集落(54.3%)均匀高水平共表达四种荧光蛋白。通过体细胞核移植获得的重构胚胎均匀表达四种荧光蛋白,并得到证实,然后将其移植到 7 头受体母猪中。两只母猪产下 11 头小猪,其中 7 头在各种组织中以相同的高水平表达四种荧光蛋白。使用护目镜直接在鼻子、蹄子和舌头上观察荧光强度。结果表明,2A 肽和双启动子的组合策略可有效地介导四种荧光蛋白在猪中的共表达,因此是通过单次核移植生成多转基因猪的有前途的方法。