Simon G, Jourlin C, Ansaldi M, Pascal M C, Chippaux M, Méjean V
Laboratoire de Chimie Bactérienne, Centre National de la Recherche Scientifique, Marseille, France.
Mol Microbiol. 1995 Sep;17(5):971-80. doi: 10.1111/j.1365-2958.1995.mmi_17050971.x.
The expression of the Escherichia coli torCAD operon, which encodes the anaerobically expressed trimethylamine N-oxide (TMAO) reductase respiratory system, requires the presence of TMAO in the medium. The response regulator, TorR, has recently been identified as the regulatory protein that controls the expression of the torCAD operon in response to TMAO. The torC regulatory region contains four direct repeats of a decameric consensus motif designated the tor boxes. Alteration by base substitutions of any of the four tor boxes in a plasmid containing a torC'-lacZ fusion dramatically reduces TorR-dependent torC expression. In addition, deletion of the distal tor box (box1) abolishes torC induction whereas the presence of a DNA fragment starting three bases upstream from box1 suffices for normal torC expression. Footprinting and gel-retardation experiments unambiguously demonstrated that TorR binds to the torC regulatory region. Three distinct regions are protected by TorR binding. One of approximately 24 nucleotides covers the first two tor boxes (box1 and box2); the second is located upstream from the -35 promoter sequence and includes the third tor box (box3); the last is found downstream from the -35 sequence and corresponds to the fourth tor box (box4). Binding to the upstream tor boxes (box1 and box2) appears to be stronger than binding to the downstream tor boxes (box3 and box4) since only the upstream region is protected at the lower concentration of TorR used in the footprinting experiments. We propose a model in which multiple binding sites (i.e. the tor boxes) contribute to the formation of a nucleoprotein complex, but only one particular proximal site positions TorR properly so that it interacts with RNA polymerase.
大肠杆菌torCAD操纵子编码厌氧表达的三甲胺N-氧化物(TMAO)还原酶呼吸系统,其表达需要培养基中存在TMAO。响应调节因子TorR最近被鉴定为控制torCAD操纵子响应TMAO表达的调节蛋白。torC调控区域包含一个十聚体共有基序(称为tor框)的四个直接重复序列。在含有torC'-lacZ融合体的质粒中,四个tor框中任何一个的碱基替换改变都会显著降低TorR依赖性的torC表达。此外,删除远端tor框(框1)会消除torC诱导,而从框1上游三个碱基开始的DNA片段的存在足以实现正常的torC表达。足迹法和凝胶阻滞实验明确表明TorR与torC调控区域结合。TorR结合保护三个不同区域。一个约24个核苷酸的区域覆盖前两个tor框(框1和框2);第二个位于-35启动子序列上游,包括第三个tor框(框3);最后一个位于-35序列下游,对应于第四个tor框(框4)。与上游tor框(框1和框2)的结合似乎比与下游tor框(框3和框4)的结合更强,因为在足迹法实验中使用的较低浓度的TorR下,只有上游区域受到保护。我们提出了一个模型,其中多个结合位点(即tor框)有助于核蛋白复合物的形成,但只有一个特定的近端位点能正确定位TorR,使其与RNA聚合酶相互作用。