Rippe K, Guthold M, von Hippel P H, Bustamante C
Deutsches Krebsforschungszentrum Abteilung Biophysik der Makromoleküle, Heidelberg, Germany.
J Mol Biol. 1997 Jul 11;270(2):125-38. doi: 10.1006/jmbi.1997.1079.
Scanning force microscopy (SFM) has been used to study transcriptional activation of Escherichia coli RNA polymerase x sigma 54 (RNAP x sigma 54) at the glnA promoter by the constitutive mutant NtrC(D54E,S160F) of the NtrC Protein (nitrogen regulatory protein C). DNA-protein complexes were deposited on mica and images were recorded in air. The DNA template was a 726 bp linear fragment with two NtrC binding sites located at the end and about 460 bp away from the RNAP x sigma 54 glnA promoter. By choosing appropriate conditions the structure of various intermediates in the transcription process could be visualized and analyzed: (1) different multimeric complexes of NtrC(D54E,S160F) dimers bound to the DNA template; (2) the closed complex of RNAP x sigma 54 at the glnA promoter; (3) association between DNA bound RNAP x sigma 54 and NtrC(D54E,S160F) with the intervening DNA looped out; and (4) the activated open promoter complex of RNAP x sigma 54. Measurements of the DNA bending angle of RNAP x sigma 54 closed promoter complexes yielded an apparent bending angle of 49(+/-24) degrees. Under conditions that allowed the formation of the open promoter complex, the distribution of bending angles displayed two peaks at 50(+/-24) degrees and 114(+/-18) degrees, suggesting that the transition from the RNAP x sigma 54 closed complex to the open complex is accompanied by an increase of the DNA bending angle.
扫描力显微镜(SFM)已被用于研究由NtrC蛋白(氮调节蛋白C)的组成型突变体NtrC(D54E,S160F)在谷氨酰胺合成酶基因(glnA)启动子处对大肠杆菌RNA聚合酶xσ54(RNAP xσ54)的转录激活作用。将DNA-蛋白质复合物沉积在云母上,并在空气中记录图像。DNA模板是一个726 bp的线性片段,有两个NtrC结合位点,分别位于末端且距离RNAP xσ54谷氨酰胺合成酶基因启动子约460 bp处。通过选择合适的条件,可以可视化和分析转录过程中各种中间体的结构:(1)与DNA模板结合的NtrC(D54E,S160F)二聚体的不同多聚体复合物;(2)谷氨酰胺合成酶基因启动子处RNAP xσ54的封闭复合物;(3)与DNA结合的RNAP xσ54和NtrC(D54E,S160F)之间的关联,中间的DNA形成环状;(4)RNAP xσ54的活化开放启动子复合物。对RNAP xσ54封闭启动子复合物的DNA弯曲角度测量得出表观弯曲角度为49(±24)度。在允许形成开放启动子复合物的条件下,弯曲角度分布在50(±24)度和114(±18)度处显示出两个峰值,这表明从RNAP xσ54封闭复合物到开放复合物的转变伴随着DNA弯曲角度的增加。