Nunes-Düby S E, Matsumoto L, Landy A
Cell. 1987 Aug 28;50(5):779-88. doi: 10.1016/0092-8674(87)90336-9.
A family of novel substrates was designed to enable the efficient accumulation of intermediates in site-specific recombination. Strategically placed nicks allow these "suicide substrates" to initiate the reaction but prevent its completion or reversal. Consequently, it has been possible to determine that lambda site-specific recombination proceeds by a pair of sequential single-strand exchanges. These results rule out that class of models invoking a concerted cutting of all four DNA strands. The sequential strand exchanges are executed in a strictly prescribed order that is the same in both integrative and excisive recombination. This specified order appears to be governed by the arrangement of bound proteins distal to the sites of strand exchange. Furthermore, when provided with an appropriate 5' OH acceptor, the Integrase protein has the capacity to execute a single DNA strand transfer in a nonreciprocal reaction.
设计了一类新型底物,以实现位点特异性重组中中间体的高效积累。策略性地引入的切口使这些“自杀底物”能够启动反应,但阻止其完成或逆转。因此,已能够确定λ位点特异性重组是通过一对连续的单链交换进行的。这些结果排除了一类调用对所有四条DNA链进行协同切割的模型。连续的链交换以严格规定的顺序执行,在整合和切除重组中都是相同的。这种特定顺序似乎受链交换位点远端结合蛋白的排列控制。此外,当提供合适的5' OH受体时,整合酶蛋白有能力在非互惠反应中执行单链DNA转移。