Perez-Campo Flor M, Spencer Helen L, Elder Rhoderick H, Stern Peter L, Ward Christopher M
Stem Cell Biology Group, Paterson Institute for Cancer Research, Christie Hospital NHS Trust, Wilmslow Road, Manchester, UK.
Exp Cell Res. 2007 Oct 1;313(16):3604-15. doi: 10.1016/j.yexcr.2007.07.021. Epub 2007 Jul 28.
The use of gene mutation/knock-out strategies in mouse embryonic stem (ES) cells has revolutionized the study of gene function in ES cells and embryonic development. However, the construction of vectors for homologous recombination strategies requires considerable expertise and time. We describe two novel vectors that can generate site specific knock-out or EGFP knock-in ES cells within 6 weeks from construct design to identification of positive ES cell clones. As proof-of-principle, we have utilized the knock-out targeting vector to modify the NEIL2 locus in ES cells. In addition, using the knock-in vector, we have inserted EGFP downstream of the 5T4 oncofetal antigen promoter in ES cells (5T4-GFP ES cells). Undifferentiated 5T4-GFP ES cells lack EGFP and maintain expression of the pluripotent markers OCT-4 and NANOG. Upon differentiation, EGFP expression is increased in 5T4-GFP ES cells and this correlates with 5T4 transcript expression of the unmodified allele, loss of Nanog and Oct-4 transcripts and upregulation of differentiation-associated transcripts. Furthermore, we demonstrate that fluorescent activated cell sorting of 5T4-GFP ES cells allows isolation of pluripotent or differentiated cells from a heterogeneous population. These vectors provide researchers with a rapid method of modifying specific ES cell genes to study cellular differentiation and embryonic development.
在小鼠胚胎干细胞(ES细胞)中使用基因突变/敲除策略,彻底改变了ES细胞基因功能及胚胎发育的研究。然而,构建用于同源重组策略的载体需要相当多的专业知识和时间。我们描述了两种新型载体,从构建设计到鉴定阳性ES细胞克隆,可在6周内产生位点特异性敲除或EGFP敲入的ES细胞。作为原理验证,我们利用敲除靶向载体在ES细胞中修饰NEIL2基因座。此外,使用敲入载体,我们在ES细胞的5T4癌胚抗原启动子下游插入了EGFP(5T4-GFP ES细胞)。未分化的5T4-GFP ES细胞缺乏EGFP,并维持多能性标志物OCT-4和NANOG的表达。分化后,5T4-GFP ES细胞中EGFP表达增加,这与未修饰等位基因的5T4转录本表达、Nanog和Oct-4转录本的丧失以及分化相关转录本的上调相关。此外,我们证明对5T4-GFP ES细胞进行荧光激活细胞分选可从异质群体中分离出多能或分化细胞。这些载体为研究人员提供了一种快速修饰特定ES细胞基因以研究细胞分化和胚胎发育的方法。