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首页> 外文期刊>Molecular and Cellular Biology >Site-directed point mutations in embryonic stem cells: a gene-targeting tag-and-exchange strategy.
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Site-directed point mutations in embryonic stem cells: a gene-targeting tag-and-exchange strategy.

机译:胚胎干细胞中的定点突变:一种基因靶向的标记和交换策略。

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Sequential gene targeting was used to introduce point mutations into one alpha 2 isoform Na,K-ATPase homolog in mouse embryonic stem (ES) cells. In the first round of targeted replacement, the gene was tagged with selectable markers by insertion of a Neor/HSV-tk gene cassette, and this event was selected for by gain of neomycin (G418) resistance. In the second targeted replacement event, the tagged genomic sequence was exchanged with a vector consisting of homologous genomic sequences carrying five site-directed nucleotide substitutions. Embryonic stem cell clones modified by exchange with the mutation vector were selected for loss of the HSV-tk gene by resistance to ganciclovir. Candidate clones were further screened and identified by polymerase chain reaction and Southern blot analysis. By this strategy, the endogenous alpha 2 isoform Na,K-ATPase gene was altered to encode two other amino acids so that the enzyme is resistant to inhibition by cardiac glycosides while maintaining its transmembrane ion-pumping function. Since the initial tagging event and the subsequent mutation-exchange event are independent of one another, a tagged cell line can be used to generate a variety of mutant lines by exchange with various mutation vectors at the tagged locus. This method should be useful for testing specific mutations introduced into the genomes of tissue culture cells and animals and for developing animal models encompassing the mutational variability of known genetic disorders.
机译:序列基因靶向用于将点突变引入小鼠胚胎干(ES)细胞中的一个alpha 2亚型Na,K-ATPase同源物中。在第一轮靶向置换中,通过插入Neor / HSV-tk基因盒,用选择标记标记该基因,并通过获得新霉素(G418)耐药性来选择该事件。在第二次靶向置换事件中,将标记的基因组序列与由带有五个定点核苷酸取代的同源基因组序列组成的载体交换。选择通过与突变载体交换而修饰的胚胎干细胞克隆,以通过对更昔洛韦的抗性而使HSV-tk基因丢失。通过聚合酶链反应和Southern印迹分析进一步筛选和鉴定候选克隆。通过这种策略,内源性α2同工型Na,K-ATPase基因被更改为编码另外两个氨基酸,因此该酶在维持其跨膜离子泵功能的同时,对强心苷具有抑制作用。由于初始标记事件和随后的突变交换事件是彼此独立的,因此可以通过与标记的位点处的各种突变载体交换来使用标记的细胞系来生成各种突变体。该方法对于测试引入组织培养细胞和动物基因组中的特定突变,以及开发涵盖已知遗传疾病的突变变异性的动物模型应该是有用的。

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