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首页> 外文期刊>Mammalian genome: official journal of the International Mammalian Genome Society >Conditional knockout of Foxc2 gene in kidney: efficient generation of conditional alleles of single-exon gene by double-selection system
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Conditional knockout of Foxc2 gene in kidney: efficient generation of conditional alleles of single-exon gene by double-selection system

机译:肾脏中Foxc2基因的条件敲除:通过双选择系统有效生成单外显子基因的条件等位基因

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摘要

Foxc2 is a single-exon gene and a key regulator in development of multiple organs, including kidney. To avoid embryonic lethality of conventional Foxc2 knockout mice, we conditionally deleted Foxc2 in kidneys. Conditional targeting of a single-exon gene involves the large floxed gene segment spanning from promoter region to coding region to avoid functional disruption of the gene by the insertion of a loxP site. Therefore, in ES cell clones surviving a conventional single-selection, e.g., neomycin-resistant gene (neo) alone, homologous recombination between the long floxed segment and target genome results in a high incidence of having only one loxP site adjacent to the selection marker. To avoid this limitation, we employed a double-selection system. We generated a Foxc2 targeting construct in which a floxed segment contained 4.6 kb mouse genome and two different selection marker genes, zeocin-resistant gene and neo, that were placed adjacent to each loxP site. After double-selection by zeocin and neomycin, 72 surviving clones were screened that yielded three correctly targeted clones. After floxed Foxc2 mice were generated by tetraploid complementation, we removed the two selection marker genes by a simultaneous-single microinjection of expression vectors for Dre and Flp recombinases into in vitro-fertilized eggs. To delete Foxc2 in mouse kidneys, floxed Foxc2 mice were mated with Pax2-Cre mice. Newborn Pax2-Cre; Foxc2(loxP/loxP) mice showed kidney hypoplasia and glomerular cysts. These results indicate the feasibility of generating floxed Foxc2 mice by double-selection system and simultaneous removal of selection markers with a single microinjection.
机译:Foxc2是一个单外显子基因,是包括肾脏在内的多个器官发育的关键调节因子。为了避免常规Foxc2基因敲除小鼠的胚胎致死性,我们有条件地删除了肾脏中的Foxc2基因。有条件地靶向单外显子基因涉及从启动子区域到编码区域的较大的模糊基因片段,以避免由于插入loxP位点而导致基因功能性破坏。因此,在幸存下来的常规单选(例如单独的新霉素抗性基因(neo))的ES细胞克隆中,长的片段与靶基因组之间的同源重组导致仅在选择标记附近只有一个loxP位点的高发生率。为了避免这种限制,我们采用了双重选择系统。我们生成了一个Foxc2靶向构建体,其中的一个片段包含4.6 kb小鼠基因组和两个不同的选择标记基因,zeocin抗性基因和neo,与每个loxP位点相邻。在通过zeocin和新霉素进行双重选择后,筛选了72个存活的克隆,产生了三个正确靶向的克隆。在通过四倍体互补产生了Foxx2小鼠后,我们通过将Dre和Flp重组酶的表达载体同时单次显微注射到体外受精卵中,去除了两个选择标记基因。为了删除小鼠肾脏中的Foxc2,需要将有斑点的Foxc2小鼠与Pax2-Cre小鼠交配。新生儿Pax2-Cre; Foxc2(loxP / loxP)小鼠表现出肾脏发育不全和肾小球囊肿。这些结果表明了通过双选择系统和单次显微注射同时去除选择标记来产生Foxc2小鼠的可行性。

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