Müller B, Jones C, Kemper B, West S C
Imperial Cancer Research Fund, Clare Hall Laboratories, South Mimms, Hertfordshire, England.
Cell. 1990 Jan 26;60(2):329-36. doi: 10.1016/0092-8674(90)90747-3.
E. coli RecA protein promotes homologous pairing and reciprocal strand exchange reactions between duplex DNA molecules in vitro. Reaction intermediates contain Holliday junctions that are driven along the DNA at a maximal rate approaching 1000 bases per minute. T4 endonuclease VII cleaves Holliday junctions in vitro, and its inclusion in RecA-mediated reactions leads to the rapid formation of heteroduplex products. Product analysis indicates patch and splice recombinant molecules similar to those expected from in vivo recombination events. The combined formation and resolution of Holliday junctions has led us to propose a model for resolution based on the structure of RecA-DNA helices. One feature of this model is that resolution, which gives rise to the two types of recombinant product, may occur without need for isomerization of the junction.
大肠杆菌RecA蛋白在体外促进双链DNA分子之间的同源配对和相互链交换反应。反应中间体包含霍利迪连接体,其以接近每分钟1000个碱基的最大速率沿着DNA移动。T4核酸内切酶VII在体外切割霍利迪连接体,将其纳入RecA介导的反应会导致异源双链体产物迅速形成。产物分析表明,存在与体内重组事件预期相似的补丁和拼接重组分子。霍利迪连接体的形成和拆分相结合,使我们基于RecA-DNA螺旋结构提出了一种拆分模型。该模型的一个特点是,产生两种重组产物的拆分可能无需连接体异构化即可发生。