首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Endonuclease-induced, targeted homologous extrachromosomal recombination in Xenopus oocytes.
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Endonuclease-induced, targeted homologous extrachromosomal recombination in Xenopus oocytes.

机译:爪蟾卵母细胞中核酸内切酶诱导的靶向同源染色体外重组。

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Homologous recombination in gene targeting in most organisms occurs by an inefficient mechanism. Inducing a double-strand break in the chromosomal target may increase this efficiency by allowing recombination to proceed by the highly efficient single-strand annealing mechanism. A gene targeting experiment was modeled in Xenopus oocytes by using a circular plasmid to mimic the chromosomal target site and a homologous linear molecule (pick-up fragment or PUF) as an analogue of the vector DNA. When those two molecules were simply injected together, no recombination was observed. In contrast, when the circular plasmid was cleaved in vivo by injection of the site-specific endonuclease, I-Sce I, relatively efficient intermolecular recombination occurred, involving up to 17% of the cleaved molecules. Recombination was dependent on the stability of the PUF; product yield was increased by using longer fragments and by injecting larger amounts of linear DNA, both of which increased the lifetime of the PUF in theoocytes. These results demonstrate that in vivo double-strand breaks can induce homologous recombination of reluctant substrates and may be useful in augmenting the efficiency of gene targeting.
机译:在大多数生物中,靶向基因的同源重组是通过一种无效的机制发生的。通过允许通过高效的单链退火机制进行重组,可以在染色体靶标中诱导双链断裂,从而提高效率。通过使用环状质粒模拟染色体目标位点和同源线性分子(拾取片段或PUF)作为载体DNA的类似物,在非洲爪蟾卵母细胞中模拟了基因靶向实验。当将这两个分子简单地注射在一起时,没有观察到重组。相反,当通过注射位点特异性核酸内切酶I-Sce I在体内切割环状质粒时,发生了相对有效的分子间重组,涉及多达17%的切割分子。重组取决于PUF的稳定性;通过使用更长的片段和注入大量的线性DNA可以增加产品产量,这两者都可以延长卵母细胞中PUF的寿命。这些结果表明,体内双链断裂可以诱导不希望的底物的同源重组,并且可以用于增强基因靶向的效率。

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