Abuin A, Bradley A
Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, Texas 77030, USA.
Mol Cell Biol. 1996 Apr;16(4):1851-6. doi: 10.1128/MCB.16.4.1851.
As a result of gene targeting, selectable markers are usually permanently introduced into the mammalian genome. Multiple gene targeting events in the same cell line can therefore exhaust the pool of markers available and limit subsequent manipulations or genetic analysis. In this study, we describe the combined use of homologous and CRE-loxP-mediated recombination to generate mouse embryonic stem cell lines carrying up to four targeted mutations and devoid of exogenous selectable markers. A cassette that contains both positive and negative selectable markers flanked by loxP sites, rendering it excisable by the CRE protein, was constructed. Homologous recombination and positive selection were used to disrupt the Rep-3 locus, a gene homologous to members of the mutS family of DNA mismatch repair genes. CRE-loxP-mediated recombination and negative selection were then used to recover clones in which the cassette had been excised. The remaining allele of Rep-3 was then subjected to a second round of targeting and excision with the same construct to generate homozygous, marker-free cell lines. Subsequently, both alleles of mMsh2, another mutS homolog, were disrupted in the same fashion to obtain cell lines homozygous for targeted mutations at both the Rep-3 and mMsh2 loci and devoid of selectable markers. Thus, embryonic stem cell lines obtained in this fashion are suitable for further manipulation and analysis involving the use of selectable markers.
由于基因打靶,选择标记通常会永久地引入哺乳动物基因组中。因此,同一细胞系中的多个基因打靶事件可能会耗尽可用的标记物库,并限制后续的操作或遗传分析。在本研究中,我们描述了同源重组和CRE-loxP介导的重组联合使用,以产生携带多达四个靶向突变且无外源选择标记的小鼠胚胎干细胞系。构建了一个包含正负选择标记且两侧有loxP位点的盒式结构,使其可被CRE蛋白切除。利用同源重组和正选择来破坏Rep-3基因座,该基因与DNA错配修复基因mutS家族的成员同源。然后使用CRE-loxP介导的重组和负选择来筛选出已切除盒式结构的克隆。然后对Rep-3的剩余等位基因进行第二轮靶向和切除,使用相同的构建体以产生纯合的、无标记的细胞系。随后,以同样的方式破坏另一个mutS同源物mMsh2的两个等位基因,以获得在Rep-3和mMsh2基因座上均为靶向突变纯合且无选择标记的细胞系。因此,以这种方式获得的胚胎干细胞系适用于涉及使用选择标记的进一步操作和分析。