生物
转座因子
表位
遗传学
突变
重组酶
FLP-FRT重组
突变体
转座子突变
基因靶向
Cre重组酶
基因
计算生物学
转座酶
转基因
重组
遗传重组
转基因小鼠
抗原
作者
Su L. Chiang,Eric J. Rubin
出处
期刊:Gene
[Elsevier BV]
日期:2002-08-01
卷期号:296 (1-2): 179-185
被引量:158
标识
DOI:10.1016/s0378-1119(02)00856-9
摘要
Mobile genetic elements are often employed for constructing gene fusions or to perform mutagenesis. mariner transposons are well-suited to such applications because of their low site specificity, in vitro activity, and exceptionally broad host range. This report describes a mariner-based method for rapidly creating a large number of insertion mutants that can be converted to in-frame epitope fusions in a single step. First, a mariner-based vector is used to deliver a FLP recombinase substrate randomly into a target molecule. Expression of the FLP recombinase is then induced to catalyse the excision of sequences flanked by FLP recombinase target recognition sites, leaving behind a triple-FLAG epitope. The reversibility of the excision event provides opportunities for using genomic targeting methods easily to create transcriptional or translational fusions to genes of interest.
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