Department of Genome Biology, Graduate School of Medicine, Osaka University, Suita, Osaka 565-0871, Japan.
Graduate School of Biological Sciences, Nara Institute of Science and Technology, Ikoma, Nara 630-0192, Japan.
Nucleic Acids Res. 2018 Jun 1;46(10):e63. doi: 10.1093/nar/gky183.
Haploid mouse embryonic stem cells (ESCs), in which a single hit mutation is sufficient to produce loss-of-function phenotypes, have provided a powerful tool for forward genetic screening. This strategy, however, can be hampered by undesired autodiploidization of haploid ESCs. To overcome this obstacle, we designed a new methodology that facilitates enrichment of homozygous mutant ESC clones arising from autodiploidization during haploid gene trap mutagenesis. Haploid mouse ESCs were purified by fluorescence-activated cell sorting to maintain their haploid property and then transfected with the Tol2 transposon-based biallelically polyA-trapping (BPATrap) vector that carries an invertible G418 plus puromycin double selection cassette. G418 plus puromycin double selection enriched biallelic mutant clones that had undergone autodiploidization following a single vector insertion into the haploid genome. Using this method, we successfully generated 222 homozygous mutant ESCs from 2208 clones by excluding heterozygous ESCs and ESCs with multiple vector insertions. This relatively low efficiency of generating homozygous mutant ESCs was partially overcome by cell sorting of haploid ESCs after Tol2 BPATrap transfection. These results demonstrate the feasibility of our approach to provide an efficient platform for mutagenesis of ESCs and functional analysis of the mammalian genome.
单倍体小鼠胚胎干细胞(ESCs)中,单个击中突变足以产生功能丧失表型,为正向遗传筛选提供了有力工具。然而,这种策略可能会受到单倍体 ESCs 意外自身二倍化的阻碍。为了克服这一障碍,我们设计了一种新方法,可促进单倍体基因捕获诱变中单倍体 ESC 自身二倍化产生的纯合突变体 ESC 克隆的富集。通过荧光激活细胞分选纯化单倍体小鼠 ESCs,以维持其单倍体特性,然后用基于 Tol2 转座子的双等位基因多 A 捕获(BPATrap)载体转染,该载体携带可翻转的 G418 和嘌呤霉素双重选择盒。G418 和嘌呤霉素双重选择富集了在单倍体基因组中单次载体插入后经历自身二倍化的双等位基因突变体克隆。使用这种方法,我们通过排除杂合子 ESCs 和具有多个载体插入的 ESCs,从 2208 个克隆中成功生成了 222 个纯合突变 ESCs。通过 Tol2 BPATrap 转染后对单倍体 ESCs 进行细胞分选,部分克服了生成纯合突变 ESCs 的这种相对较低效率。这些结果表明,我们的方法为 ESCs 的诱变和哺乳动物基因组的功能分析提供了一种高效的平台,具有可行性。