Reuter M, Kupper D, Meisel A, Schroeder C, Krüger D H
Institute of Medical Virology, Humboldt University Medical School (Charité), D-10098 Berlin, Germany.
J Biol Chem. 1998 Apr 3;273(14):8294-300. doi: 10.1074/jbc.273.14.8294.
EcoRII is a member of the expanding group of type IIe restriction endonucleases that share the distinguishing feature of requiring cooperativity between two recognition sites in their substrate DNA. To determine the stoichiometry of the active DNA-enzyme complex and the mode of cooperative interaction, we have investigated the dependence of EcoRII cleavage on the concentration of EcoRII dimers. Maximal restriction was observed at dimer/site ratios of 0.25 and 0. 5. The molecular weight of the DNA-enzyme complex eluted from a gel filtration column also corresponds to a dimeric enzyme structure bound to two substrate sites. We conclude that one EcoRII dimer is sufficient to interact cooperatively with two DNA recognition sites. A Lac repressor "barrier" bound between two normally reactive EcoRII sites did not inhibit restriction endonuclease activity, indicating that cooperativity between EcoRII sites is achieved by bending or looping of the intervening DNA stretch. Comparative cleavage of linear substrates with differently spaced interacting sites revealed an inverse correlation between cleavage rate and site distance. At the optimal distance of one helical turn, EcoRII cleavage is independent of the orientation of the recognition sequence in the DNA double strand.
EcoRII是不断扩大的IIe型限制性内切酶家族的成员,这类酶的共同显著特征是在其底物DNA中需要两个识别位点之间的协同作用。为了确定活性DNA - 酶复合物的化学计量以及协同相互作用的模式,我们研究了EcoRII切割对EcoRII二聚体浓度的依赖性。在二聚体/位点比率为0.25和0.5时观察到最大限制作用。从凝胶过滤柱上洗脱下来的DNA - 酶复合物的分子量也对应于与两个底物位点结合的二聚体酶结构。我们得出结论,一个EcoRII二聚体足以与两个DNA识别位点协同相互作用。结合在两个正常有反应性的EcoRII位点之间的乳糖阻遏物“屏障”并不抑制限制性内切酶活性,这表明EcoRII位点之间的协同作用是通过中间DNA片段的弯曲或成环实现的。对具有不同间隔相互作用位点的线性底物进行比较切割,结果显示切割速率与位点距离之间呈负相关。在一个螺旋圈的最佳距离下,EcoRII切割与DNA双链中识别序列的方向无关。