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首页> 外文期刊>Transgenic research >A caveat in mouse genetic engineering: ectopic gene targeting in ES cells by bidirectional extension of the homology arms of a gene replacement vector carrying human PARP-1
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A caveat in mouse genetic engineering: ectopic gene targeting in ES cells by bidirectional extension of the homology arms of a gene replacement vector carrying human PARP-1

机译:小鼠基因工程中的警告:通过双向延伸携带人PARP-1的基因替代载体的同源臂,在ES细胞中靶向异位基因

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摘要

Here we report an approach to generate a knock-in mouse model using an 'ends-out' gene replacement vector to substitute the murine Parp-1 (mParp-1) coding sequence (32 kb) with its human orthologous sequence (46 kb). Unexpectedly, examination of mutant ES cell clones and mice revealed that site-specific homologous recombination was mimicked in three independently generated ES cell clones by bidirectional extension of the vector homology arms using the endogenous mParp-1-flanking sequences as templates. This was followed by adjacent integration of the targeting vector, thus leaving the endogenous mParp-1 locus functional. A related phenomenon termed 'ectopic gene targeting' has so far only been described for 'ends-in' integration-type vectors in non-ES cell gene targeting. We provide reliable techniques to detect such ectopic gene targeting which represents an unexpected caveat in mouse genetic engineering that should be considered in the design and validation strategy of future gene knock-in approaches.
机译:在这里,我们报告了一种使用'ends-out'基因替代载体生成敲入小鼠模型的方法,以其人类直系同源序列(46 kb)替代了鼠Parp-1(mParp-1)编码序列(32 kb) 。出乎意料的是,对突变ES细胞克隆和小鼠的检查显示,通过使用内源性mParp-1侧翼序列作为模板,通过载体同源性臂的双向延伸,在三个独立生成的ES细胞克隆中模拟了位点特异性同源重组。随后是靶向载体的邻近整合,从而使内源性mParp-1基因座保持功能。迄今为止,仅针对非ES细胞基因靶向中的“末端插入”整合型载体描述了称为“异位基因靶向”的相关现象。我们提供可靠的技术来检测这种异位基因靶向,这代表了小鼠基因工程中的意外警告,应在未来基因敲入方法的设计和验证策略中予以考虑。

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