Gómez Martha C, Pope Charles Earle, Kutner Robert H, Ricks David M, Lyons Leslie A, Ruhe Mark T, Dumas Cherie, Lyons Justine, Dresser Betsy L, Reiser Jakob
Audubon Center for Research of Endangered Species, New Orleans, Louisiana 70131, USA.
Cloning Stem Cells. 2009 Mar;11(1):167-76. doi: 10.1089/clo.2008.0054.
The efficient use of somatic cell nuclear transfer (SCNT), in conjunction with genetic modification of donor cells provides a general means to add or inactivate genes in mammals. This strategy has substantially improved the efficacy of producing genetically identical animals carrying mutant genes corresponding to specific human disorders. Lentiviral (LV) vectors have been shown to be well suited for introducing transgenes into cells to be used as donor nuclei for SCNT. In the present study, we established an LV vector-based transgene delivery approach for producing live transgenic domestic cats by SCNT. We have demonstrated that cat fetal fibroblasts can be transduced with EGFP-encoding LV vectors bearing various promoters including the human cytomegalovirus immediate early (hCMV-IE) promoter, the human translation elongation factor 1alpha (hEF-1alpha) promoter and the human ubiquitin C (hUbC) promoter. Among the promoters tested, embryos reconstructed with donor cells transduced with a LV-vector bearing the hUbC promoter displayed sustained transgene expression at the blastocyst stage while embryos reconstructed with LV vector-transduced cells containing hCMV-IE-EGFP or hEF-1alpha-EGFP cassettes did not. After transfer of 291 transgenic cloned embryos into the oviducts of eight recipient domestic cats (mean =36.5 +/- 10.1), three (37.5%) were diagnosed to be pregnant, and a total of six embryos (2.1%) implanted. One live male offspring was delivered by Cesarean section on day 64 of gestation, and two kittens were born dead after premature delivery on day 55. In summary, we report the birth of transgenic cloned kittens produced by LV vector-mediated transduction of donor cells and confirm that cloned kittens express the EGFP reporter transgene in all body tissues.
将体细胞核移植(SCNT)与供体细胞的基因改造相结合,能够有效地在哺乳动物中添加或使基因失活。这一策略显著提高了生产携带与特定人类疾病相对应的突变基因的基因相同动物的效率。慢病毒(LV)载体已被证明非常适合将转基因引入用作SCNT供体核的细胞。在本研究中,我们建立了一种基于LV载体的转基因递送方法,用于通过SCNT生产活体转基因家猫。我们已经证明,携带包括人巨细胞病毒立即早期(hCMV-IE)启动子、人翻译延伸因子1α(hEF-1α)启动子和人泛素C(hUbC)启动子在内的各种启动子的编码EGFP的LV载体可以转导猫胎儿成纤维细胞。在所测试的启动子中,用携带hUbC启动子的LV载体转导的供体细胞重建的胚胎在囊胚阶段显示出持续的转基因表达,而用含有hCMV-IE-EGFP或hEF-1α-EGFP盒的LV载体转导的细胞重建的胚胎则没有。将291个转基因克隆胚胎移植到8只受体家猫的输卵管中(平均 = 36.5 +/- 10.1)后,3只(37.5%)被诊断为怀孕,总共6个胚胎(2.1%)着床。在妊娠第64天通过剖腹产分娩出1只存活的雄性后代,在妊娠第55天早产2只小猫后死亡。总之,我们报告了通过LV载体介导的供体细胞转导产生的转基因克隆小猫的出生,并证实克隆小猫在所有身体组织中都表达EGFP报告转基因。