Hoess R H, Wierzbicki A, Abremski K
Nucleic Acids Res. 1986 Mar 11;14(5):2287-300. doi: 10.1093/nar/14.5.2287.
The lox-Cre site-specific recombination system of bacteriophage P1 is comprised of a site on the DNA where recombination occurs called loxP, and a protein, Cre, which mediates the reaction. The loxP site is 34 base pairs (bp) in length and consists of two 13 bp inverted repeats separated by an 8 bp spacer region. Previously it has been shown that the cleavage and strand exchange of recombining loxP sites occurs within this spacer region. We report here an analysis of various base substitution mutations within the spacer region of loxP, and conclude the following: Homology is a requirement for efficient recombination between recombining loxP sites. There is at least one position within the spacer where a base change drastically reduces recombination even when there is homology between the two recombining loxP sites. When two loxP sites containing symmetric spacer regions undergo Cre-mediated recombination in vitro, the DNA between the sites undergoes both excision and inversion with equal frequency.
噬菌体P1的lox-Cre位点特异性重组系统由DNA上发生重组的位点loxP和介导该反应的蛋白质Cre组成。loxP位点长度为34个碱基对(bp),由两个13 bp的反向重复序列组成,中间间隔一个8 bp的间隔区。此前已表明,重组loxP位点的切割和链交换发生在该间隔区内。我们在此报告对loxP间隔区内各种碱基替代突变的分析,并得出以下结论:同源性是重组loxP位点之间高效重组的必要条件。间隔区内至少有一个位置,即使两个重组loxP位点之间存在同源性,碱基变化也会大幅降低重组效率。当两个包含对称间隔区的loxP位点在体外进行Cre介导的重组时,位点之间的DNA以相同频率进行切除和倒位。