首页> 外文期刊>Genesis: the journal of genetics and development >Removal of the floxed neo gene from a conditional knockout allele by the adenoviral Cre recombinase in vivo.
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Removal of the floxed neo gene from a conditional knockout allele by the adenoviral Cre recombinase in vivo.

机译:在体内通过腺病毒Cre重组酶从条件敲除等位基因中去除了有缺陷的neo基因。

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摘要

Conditional and tissue specific gene targeting using the Cre-loxP recombination system in combination with established ES cell techniques has become a standard for in vivo loss of function studies. In a typical flox and delete gene targeting strategy, the loxP-neo-loxP cassette is inserted into an intron and an additional loxP site is located in one of the homology arms so that loxP sites surround a functionally essential part of the gene. The neo cassette in usually removed by transient expression of the Cre recombinase in ES cells to avoid selection gene interference and genetic ambiquity. However, this causes a significant increase in manipulation of ES cells and often compromises ES cell pluripotency. Here we describe a method in which the floxed neo gene is removed from a knockout allele by infecting 16-cell-stage morulae by the recombinant Cre adenovirus. This virus provides only transient Cre expression and does not integrate into the mouse genome. Produced mosaic mice transmitted the desired allele without the neo cassette with high frequency to their offspring. This method is rapid and easy and does not require any special equipment. Moreover, because superovulated mice can be used as donors, this method does not necessitate a large number of mice.
机译:使用Cre-loxP重组系统结合已建立的ES细胞技术进行条件和组织特异性基因靶向已经成为体内功能丧失研究的标准。在典型的flox和delete基因靶向策略中,将loxP-neo-loxP盒插入内含子,并将另一个loxP位点置于同源臂之一中,以便loxP位点围绕基因的功能必需部分。通常通过在ES细胞中瞬时表达Cre重组酶去除neo盒,以避免选择基因干扰和遗传不确定性。然而,这导致对ES细胞的操纵的显着增加并且经常损害ES细胞的多能性。在这里,我们描述了一种方法,其中通过重组Cre腺病毒感染16细胞阶段的桑ula虫,从敲除的等位基因中去除了新的flo基因。该病毒仅提供瞬时Cre表达,不会整合到小鼠基因组中。产生的花叶小鼠将所需的等位基因不带有neo盒地高频率地传递给其后代。该方法快速简便,不需要任何特殊设备。此外,由于可以将超排卵的小鼠用作供体,因此该方法不需要大量的小鼠。

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