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Selective Disruption of Genes Transiently Induced in Differentiating Mouse Embryonic Stem Cells by Using Gene Trap Mutagenesis and Site-Specific Recombination

机译:通过使用基因陷阱诱变和特定位点重组在小鼠胚胎干细胞分化中短暂诱导的基因的选择性破坏。

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A strategy employing gene trap mutagenesis and site-specific recombination (Cre/loxP) has been used to identify genes that are transiently expressed during early mouse development. Embryonic stem cells expressing a reporter plasmid that codes for neomycin phosphotransferase and Escherichia coli LacZ were infected with a retroviral gene trap vector (U3Cre) carrying coding sequences for Cre recombinase (Cre) in the U3 region. Activation of Cre expression from integrations into active genes resulted in a permanent switching between the two selectable marker genes and consequently the expression of β-galactosidase (β-Gal). As a result, clones in which U3Cre had disrupted genes that were only transiently expressed could be selected. Moreover, U3Cre-activating cells acquired a cell autonomous marker that could be traced to cells and tissues of the developing embryo. Thus, when two of the clones with inducible U3Cre integrations were passaged in the germ line, they generated spatial patterns of β-Gal expression.
机译:已经采用了一种利用基因陷阱诱变和位点特异性重组(Cre / loxP )的策略来鉴定在小鼠早期发育过程中瞬时表达的基因。将表达编码新霉素磷酸转移酶和大肠杆菌 LacZ的报告质粒的胚胎干细胞用逆转录病毒基因捕获载体(U3Cre)感染,该载体在U3区带有Cre重组酶(Cre)的编码序列。从整合到活性基因中的Cre表达的激活导致两个可选标记基因之间的永久切换,因此导致β-半乳糖苷酶(β-Gal)的表达。结果,可以选择其中U3Cre破坏了仅瞬时表达的基因的克隆。而且,U3Cre激活细胞获得了一种细胞自主标记,可以追溯到发育中的胚胎的细胞和组织。因此,当两个具有可诱导的U3Cre整合的克隆在种系中传代时,它们产生了β-Gal表达的空间模式。

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