Qu Shimian, Rinehart Cammie, Wu Hsiao-Huei, Wang Shizhen Emily, Carter Bruce, Xin Hongbo, Kotlikoff Michael, Arteaga Carlos L
Department of Cancer Biology, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-6838, USA.
Genesis. 2006 Oct;44(10):477-86. doi: 10.1002/dvg.20243.
Recombinase-mediated unidirectional DNA inversion and transcriptional arrest is a promising strategy for high throughput conditional mutagenesis in the mouse. Banks of mouse embryonic stem cells with defined, transcriptionally silent insertions that can be activated by Cre recombinase would take advantage of existing transgenic Cre lines to rapidly produce hundreds of lineage specific and temporally controlled knockout mice for each gene, thereby introducing significant parallelism to functional gene annotation. However, the extent to which this strategy results in effective gene knockout has not been established. To test the feasibility of this strategy we targeted ErbB3, a member of the ErbB family of tyrosine kinase receptors, using this strategy. Insertion of a reversed "flipflox" vector consisting of a gene inactivation cassette (GI) and an internal ribosome entry site (IRES)-GFP reporter into intron 1 of ErbB3 was transcriptionally silent and did not affect ErbB3 expression. Crosses with ubiquitous and lineage specific Cre recombinase expressing lines permanently inverted the inserted GI cassette and blocked ErbB3 expression. Unidirectional DNA inversion by in vivo recombination is an effective strategy for targeted or ubiquitous gene knockout.
重组酶介导的单向DNA倒位和转录阻滞是小鼠高通量条件性诱变的一种有前景的策略。具有可被Cre重组酶激活的确定的、转录沉默插入片段的小鼠胚胎干细胞库,将利用现有的转基因Cre品系,为每个基因快速产生数百只谱系特异性和时间可控的基因敲除小鼠,从而为功能基因注释引入显著的并行性。然而,该策略导致有效基因敲除的程度尚未确定。为了测试该策略的可行性,我们使用此策略靶向ErbB3(一种酪氨酸激酶受体的ErbB家族成员)。将由基因失活盒(GI)和内部核糖体进入位点(IRES)-绿色荧光蛋白(GFP)报告基因组成的反向“翻转lox”载体插入ErbB3的内含子1中,其转录沉默且不影响ErbB3表达。与表达普遍存在和谱系特异性Cre重组酶的品系杂交可使插入的GI盒永久倒位并阻断ErbB3表达。通过体内重组进行单向DNA倒位是靶向或普遍基因敲除的有效策略。