Hahn S, Hendrickson W, Schleif R
J Mol Biol. 1986 Apr 5;188(3):355-67. doi: 10.1016/0022-2836(86)90160-9.
The mechanism by which the cyclic AMP receptor protein, CRP, stimulates transcription of the Escherichia coli araBAD promoter was studied in vitro. Under one set of conditions, CRP stimulated by eightfold the rate of RNA polymerase open complex formation on supercoiled DNA template containing the normal wild-type araBAD regulatory region. Since previous studies in vivo had identified an upstream site termed araO2 that is involved in both repression and in the CRP requirement for PBAD induction, we performed similar experiments in vitro. Deletion of araO2 or alterations of its orientation with respect to the araI site by half integral numbers of turns greatly reduced the CRP requirement for induction of PBAD. Linearizing the DNA has the same effect as deleting araO2 from the supercoiled DNA template. The similarity of conditions that relieve the classical repression of PBAD in vivo and the conditions that eliminate the requirement for CRP for maximal activity in vitro suggest a close relationship between repression in the ara system and the role of CRP. At lower concentrations of AraC protein and slightly different conditions than those used in the above-mentioned experiments, CRP does stimulate transcription from linear or supercoiled templates lacking araO2. On linear DNA under these conditions, one dimer of AraC protein binds to linear araPBAD DNA, but is incapable of stimulating transcription without the additional binding of CRP. The responses of the ara system under the second set of conditions are unlike its behavior in vivo.
在体外研究了环腺苷酸受体蛋白(CRP)刺激大肠杆菌araBAD启动子转录的机制。在一组条件下,CRP使含有正常野生型araBAD调控区的超螺旋DNA模板上RNA聚合酶开放复合物的形成速率提高了八倍。由于之前的体内研究确定了一个上游位点araO2,它参与了PBAD诱导的抑制作用以及CRP的需求,我们在体外进行了类似的实验。删除araO2或使其相对于araI位点的方向改变半整数圈,大大降低了PBAD诱导对CRP的需求。将DNA线性化与从超螺旋DNA模板中删除araO2具有相同的效果。在体内缓解PBAD经典抑制的条件与在体外消除CRP对最大活性需求的条件相似,这表明ara系统中的抑制作用与CRP的作用之间存在密切关系。在较低浓度的AraC蛋白以及与上述实验略有不同的条件下,CRP确实能刺激来自缺乏araO2的线性或超螺旋模板的转录。在这些条件下的线性DNA上,一个AraC蛋白二聚体与线性araPBAD DNA结合,但在没有CRP额外结合的情况下无法刺激转录。第二组条件下ara系统的反应与其在体内的行为不同。