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Nanos3 Gene Targeting in Medaka ES Cells

机译:在Medaka ES细胞中靶向Nanos3基因

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Gene targeting (GT) by homologous recombination offers the best precision for genome editing in mice. nanos3 is a highly conserved gene and encodes a zinc-finger RNA binding protein essential for germ stem cell maintenance in Drosophila, zebrafish and mouse. Here we report nanos3 GT in embryonic stem (ES) cells of the fish medaka as a lower vertebrate model organism. A vector was designed for GT via homologous recombination on the basis of positive-negative selection (PNS). The ES cell line MES1 after gene transfer and PNS produced 56 colonies that were expanded into ES cell sublines. Nine sublines were GT-positive by PCR genotyping, 4 of which were homologous recombinants as revealed by Southern blot. We show that one of the 4, A15, contains a precisely targeted nanos3 allele without any random events, demonstrating the GT feasibility in medaka ES cells. Importantly, A15 retained all features of undifferentiated ES cells, including stable self-renewal, an undifferentiated phenotype, pluripotency gene expression and differentiation during chimeric embryogenesis. These results provide first evidence that the GT procedure and genuine GT on a chromosomal locus such as nanos3 do not compromise pluripotency in ES cells of a lower vertebrate.
机译:通过同源重组的基因靶向(GT)为小鼠中的基因组编辑提供了最佳精度。 nanos3是一个高度保守的基因,编码果蝇,斑马鱼和小鼠的生殖干细胞维持必需的锌指RNA结合蛋白。在这里,我们报告鱼的胚胎干(ES)细胞中的nanos3 GT作为较低的脊椎动物模型生物。在正-负选择(PNS)的基础上,通过同源重组为GT设计了载体。基因转移和PNS后的ES细胞系MES1产生了56个菌落,这些菌落被扩展为ES细胞亚系。通过PCR基因分型,九个亚系是GT阳性的,如Southern印迹所揭示的,其中四个是同源重组体。我们显示4个A15中的一个包含精确定位的nanos3等位基因,没有任何随机事件,证明了在Medaka ES细胞中GT的可行性。重要的是,A15保留了未分化ES细胞的所有特征,包括稳定的自我更新,未分化表型,多能性基因表达和嵌合胚发生过程中的分化。这些结果提供了第一个证据,即在染色体位点(例如nanos3)上的GT程序和真正的GT不会损害低等脊椎动物ES细胞的多能性。

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