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基于限制性片段长度多态性的BAC靶向多态性胚胎干细胞产生基因敲除等位基因。

Generation of knockout alleles by RFLP based BAC targeting of polymorphic embryonic stem cells.

作者信息

Barakat Tahsin Stefan, Gribnau Joost

机构信息

Department of Reproduction and Development, Erasmus MC, University Medical Center, Room Ee 09-71, PO Box 2040, 3000 CA, Rotterdam, The Netherlands,

出版信息

Methods Mol Biol. 2015;1227:143-80. doi: 10.1007/978-1-4939-1652-8_7.

Abstract

The isolation of germ line competent mouse Embryonic Stem (ES) cells and the ability to modify the genome by homologous recombination has revolutionized life science research. Since its initial discovery, several approaches have been introduced to increase the efficiency of homologous recombination, including the use of isogenic DNA for the generation of targeting constructs, and the use of Bacterial Artificial Chromosomes (BACs). BACs have the advantage of combining long stretches of homologous DNA, thereby increasing targeting efficiencies, with the possibilities delivered by BAC recombineering approaches, which provide the researcher with almost unlimited possibilities to efficiently edit the genome in a controlled fashion. Despite these advantages of BAC targeting approaches, a widespread use has been hampered, mainly because of the difficulties in identifying BAC-targeted knockout alleles by conventional methods like Southern Blotting. Recently, we introduced a novel BAC targeting strategy, in which Restriction Fragment Length Polymorphisms (RFLPs) are targeted in polymorphic mouse ES cells, enabling an efficient and easy PCR-based readout to identify properly targeted alleles. Here we provide a detailed protocol for the generation of targeting constructs, targeting of ES cells, and convenient PCR-based analysis of targeted clones, which enable the user to generate knockout ES cells of almost every gene in the mouse genome within a 2-month period.

摘要

生殖系有能力的小鼠胚胎干细胞(ES细胞)的分离以及通过同源重组修饰基因组的能力彻底改变了生命科学研究。自最初发现以来,已经引入了几种方法来提高同源重组的效率,包括使用同基因DNA生成靶向构建体,以及使用细菌人工染色体(BAC)。BAC具有将长片段同源DNA结合在一起的优势,从而提高靶向效率,同时还具备BAC重组工程方法所带来的可能性,该方法为研究人员提供了几乎无限的可能性,使其能够以可控方式高效编辑基因组。尽管BAC靶向方法具有这些优势,但其广泛应用受到了阻碍,主要是因为通过传统方法如Southern印迹法鉴定BAC靶向的敲除等位基因存在困难。最近,我们引入了一种新型的BAC靶向策略,其中在多态性小鼠ES细胞中靶向限制性片段长度多态性(RFLP),从而实现基于PCR的高效且简便的读出,以鉴定正确靶向的等位基因。在此,我们提供了一个详细的方案,用于生成靶向构建体、靶向ES细胞以及对靶向克隆进行便捷的基于PCR的分析,这使得用户能够在两个月内生成小鼠基因组中几乎每个基因的敲除ES细胞。

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