Sze C C, Laurie A D, Shingler V
Department of Cell and Molecular Biology, Umeå University, S-901 87 Umeå, Sweden.
J Bacteriol. 2001 May;183(9):2842-51. doi: 10.1128/JB.183.9.2842-2851.2001.
Transcription from the Pseudomonas CF600-derived sigma(54)-dependent promoter Po is controlled by the aromatic-responsive activator DmpR. Here we examine the mechanism(s) by which integration host factor (IHF) stimulates DmpR-activated transcriptional output of the Po promoter both in vivo and in vitro. In vivo, the Po promoter exhibits characteristics that typify many sigma(54)-dependent promoters, namely, a phasing-dependent tolerance with respect to the distance from the regulator binding sites to the distally located RNA polymerase binding site, and a strong dependence on IHF for optimal promoter output. IHF is shown to affect transcription via structural repercussions mediated through binding to a single DNA signature located between the regulator and RNA polymerase binding sites. In vitro, using DNA templates that lack the regulator binding sites and thus bypass a role of IHF in facilitating physical interaction between the regulator and the transcriptional apparatus, IHF still mediates a DNA binding-dependent stimulation of Po transcription. This stimulatory effect is shown to be independent of previously described mechanisms for the effects of IHF at sigma(54) promoters such as aiding binding of the regulator or recruitment of sigma(54)-RNA polymerase via UP element-like DNA. The effect of IHF could be traced to promotion and/or stabilization of open complexes within the nucleoprotein complex that may involve an A+T-rich region of the IHF binding site and promoter-upstream DNA. Mechanistic implications are discussed in the context of a model in which IHF binding results in transduction of DNA instability from an A+T-rich region to the melt region of the promoter.
来自铜绿假单胞菌CF600的σ⁵⁴依赖型启动子Po的转录受芳香族反应激活因子DmpR的控制。在此,我们研究了整合宿主因子(IHF)在体内和体外刺激Po启动子的DmpR激活转录输出的机制。在体内,Po启动子表现出许多σ⁵⁴依赖型启动子的典型特征,即相对于调节因子结合位点到远端RNA聚合酶结合位点的距离具有相位依赖性耐受性,并且对IHF有强烈依赖性以实现最佳启动子输出。结果表明,IHF通过与位于调节因子和RNA聚合酶结合位点之间的单个DNA特征结合介导的结构影响来影响转录。在体外,使用缺乏调节因子结合位点从而绕过IHF在促进调节因子与转录装置之间物理相互作用中的作用的DNA模板,IHF仍然介导对Po转录的DNA结合依赖性刺激。这种刺激作用被证明独立于先前描述的IHF在σ⁵⁴启动子处的作用机制,例如帮助调节因子结合或通过类UP元件DNA募集σ⁵⁴-RNA聚合酶。IHF的作用可追溯到核蛋白复合物内开放复合物的促进和/或稳定,这可能涉及IHF结合位点和启动子上游DNA的富含A+T的区域。在一个模型的背景下讨论了其机制意义,在该模型中,IHF结合导致DNA不稳定性从富含A+T的区域传递到启动子的解链区域。