Bonaldo P, Chowdhury K, Stoykova A, Torres M, Gruss P
Department of Molecular Cell Biology, Max Planck Institute of Biophysical Chemistry, Göttingen, 37077, Germany.
Exp Cell Res. 1998 Oct 10;244(1):125-36. doi: 10.1006/excr.1998.4208.
We have used different gene trap vectors and in vitro preselection of embryonic stem (ES) cells for a large scale screening of insertional mutations in developmentally regulated genes. A gene trap vector was constructed, which contains an internal ribosome entry site (IRES) upstream from a betageo selectable-reporter fusion gene. Analysis of 801 independent integrations revealed that the IRESbetageo vector allows for a global enrichment of about 15 folds in the number of detectable gene trap events when compared with a conventional betageo vector. Characterization of in vitro and in vivo lacZ expression suggested that this IRES-based vector is able to capture a wide range of genes expressed in a variety of tissues and developmental stages, and it can also allow trapping of genes expressed at very low levels in ES cells. A preselection protocol was devised, where gene-trapped ES cells were grown in the presence of specific growth/differentiation factors such as follistatin, nerve growth factor, and retinoic acid. Several gene trap integrations were found to be either activated or repressed by one of these factors. Characterization of lacZ expression during embryogenesis showed a strong enrichment of restricted patterns in vivo after ES cell preselection. These results suggest that a combination of IRESbetageo vector and in vitro preselection is more effective for the capture and mutation of a large number of developmental genes.
我们使用了不同的基因捕获载体,并对胚胎干细胞(ES细胞)进行体外预选,以大规模筛选发育调控基因中的插入突变。构建了一种基因捕获载体,其在βgeo选择报告融合基因上游含有一个内部核糖体进入位点(IRES)。对801个独立整合事件的分析表明,与传统的βgeo载体相比,IRESβgeo载体可使可检测到的基因捕获事件数量整体富集约15倍。对体外和体内lacZ表达的表征表明,这种基于IRES的载体能够捕获在多种组织和发育阶段表达的广泛基因,并且还能捕获在ES细胞中低水平表达的基因。设计了一种预选方案,使基因捕获的ES细胞在诸如卵泡抑素、神经生长因子和视黄酸等特定生长/分化因子存在的情况下生长。发现一些基因捕获整合事件会被这些因子之一激活或抑制。胚胎发育过程中lacZ表达的表征显示,ES细胞预选后,体内受限模式有强烈富集。这些结果表明,IRESβgeo载体与体外预选相结合对于捕获和突变大量发育基因更有效。