Ghosh Kaushik, Lau Chi-Kong, Gupta Kushol, Van Duyne Gregory D
Department of Biochemistry & Biophysics and Howard Hughes Medical Institute, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania 19104, USA.
Nat Chem Biol. 2005 Oct;1(5):275-82. doi: 10.1038/nchembio733. Epub 2005 Sep 11.
The bacteriophage P1 Cre recombinase catalyzes site-specific recombination between 34-base-pair loxP sequences in a variety of topological contexts. This reaction is widely used to manipulate DNA molecules in applications ranging from benchtop cloning to genome modifications in transgenic animals. Despite the simple, highly symmetric nature of the Cre-loxP system, there is strong evidence that the reaction is asymmetric; the 'bottom' strands in the recombining loxP sites are preferentially exchanged before the 'top' strands. Here, we address the mechanistic basis for ordered strand exchange in the Cre-loxP recombination pathway. Using suicide substrates containing 5'-bridging phosphorothioate linkages at both cleavage sites, fluorescence resonance energy transfer between synapsed loxP sites and a Cre mutant that can cleave the bridging phosphorothioate linkage but not a normal phosphodiester linkage, we showed that preferential formation of a specific synaptic complex between loxP sites imposes ordered strand exchange during recombination and that synapsis stimulates cleavage of loxP sites.
噬菌体P1 Cre重组酶可在多种拓扑结构环境下催化34个碱基对的loxP序列之间的位点特异性重组。该反应广泛应用于从台式克隆到转基因动物基因组修饰等各种应用中,用于操纵DNA分子。尽管Cre-loxP系统具有简单、高度对称的性质,但有强有力的证据表明该反应是不对称的;重组loxP位点中的“底部”链在“顶部”链之前优先交换。在这里,我们探讨了Cre-loxP重组途径中有序链交换的机制基础。使用在两个切割位点均含有5'-桥连硫代磷酸酯键的自杀底物、突触连接的loxP位点之间的荧光共振能量转移以及一种能够切割桥连硫代磷酸酯键但不能切割正常磷酸二酯键的Cre突变体,我们表明loxP位点之间特定突触复合物的优先形成在重组过程中强加了有序链交换,并且突触连接刺激了loxP位点的切割。