Monti Maria C, Hernández-Arriaga Ana M, Kamphuis Monique B, López-Villarejo Juan, Heck Albert J R, Boelens Rolf, Díaz-Orejas Ramón, van den Heuvel Robert H H
Bijvoet Center for Biomolecular Research and Utrecht Institute for Pharmaceutical Sciences, Department of Biomolecular Mass Spectrometry, Utrecht University, Sorbonnelaan 16, 3584 CA Utrecht, The Netherlands.
Nucleic Acids Res. 2007;35(5):1737-49. doi: 10.1093/nar/gkm073. Epub 2007 Feb 21.
The parD operon of Escherichia coli plasmid R1 encodes a toxin-antitoxin system, which is involved in plasmid stabilization. The toxin Kid inhibits cell growth by RNA degradation and its action is neutralized by the formation of a tight complex with the antitoxin Kis. A fascinating but poorly understood aspect of the kid-kis system is its autoregulation at the transcriptional level. Using macromolecular (tandem) mass spectrometry and DNA binding assays, we here demonstrate that Kis pilots the interaction of the Kid-Kis complex in the parD regulatory region and that two discrete Kis-binding regions are present on parD. The data clearly show that only when the Kis concentration equals or exceeds the Kid concentration a strong cooperative effect exists between strong DNA binding and Kid2-Kis2-Kid2-Kis2 complex formation. We propose a model in which transcriptional repression of the parD operon is tuned by the relative molar ratio of the antitoxin and toxin proteins in solution. When the concentration of the toxin exceeds that of the antitoxin tight Kid2-Kis2-Kid2 complexes are formed, which only neutralize the lethal activity of Kid. Upon increasing the Kis concentration, (Kid2-Kis2)n complexes repress the kid-kis operon.
大肠杆菌质粒R1的parD操纵子编码一种毒素-抗毒素系统,该系统参与质粒的稳定。毒素Kid通过RNA降解抑制细胞生长,其作用通过与抗毒素Kis形成紧密复合物而被中和。kid-kis系统一个引人入胜但了解甚少的方面是其在转录水平的自我调节。利用大分子(串联)质谱和DNA结合试验,我们在此证明Kis引导Kid-Kis复合物在parD调控区域的相互作用,并且parD上存在两个离散的Kis结合区域。数据清楚地表明,只有当Kis浓度等于或超过Kid浓度时,强DNA结合与Kid2-Kis2-Kid2-Kis2复合物形成之间才存在强烈的协同效应。我们提出一个模型,其中parD操纵子的转录抑制由溶液中抗毒素和毒素蛋白的相对摩尔比调节。当毒素浓度超过抗毒素浓度时,会形成紧密的Kid2-Kis2-Kid2复合物,其仅中和Kid的致死活性。随着Kis浓度的增加,(Kid2-Kis2)n复合物抑制kid-kis操纵子。