Neusser Thomas, Gildehaus Nina, Wurm Reinhild, Wagner Rolf
Institut für Physikalische Biologie, Heinrich-Heine-Universität Düsseldorf, Universitätsstr. 1, D-40225 Düsseldorf, Germany.
Biol Chem. 2008 Mar;389(3):285-97. doi: 10.1515/BC.2008.023.
The small bacterial 6S RNA has been recognized as a transcriptional regulator, facilitating the transition from exponential to stationary growth phase by preferentially inhibiting E sigma 70 RNA polymerase holoenzyme transcription. Consistent with this function, the cellular concentration of 6S RNA increases with stationary phase. We have studied the underlying mechanisms responsible for the growth phase-dependent differences in 6S RNA concentration. To this aim, we have analyzed the effects of the typical bacterial growth phase and stress regulators FIS, H-NS, LRP and StpA on 6S RNA expression. Measurements of 6S RNA accumulation in strains deficient in each one of these proteins support their contribution as potential regulators. Specific binding of the four proteins to DNA fragments containing 6S RNA promoters was demonstrated by gel retardation and DNase I footprinting. Moreover, in vitro transcription analysis with both RNA polymerase holoenzymes, E sigma 70 and E sigma 38, demonstrated a direct inhibition of 6S RNA transcription by H-NS, StpA and LRP, while FIS seems to act as a dual regulator. In vitro transcription in the presence of ppGpp indicates that 6S RNA promoters are not stringently regulated. Our results underline that regulation of 6S RNA transcription depends on a complex network, involving a set of bacterial regulators with general importance in the adaptation to changing growth conditions.
小细菌6S RNA已被公认为一种转录调节因子,它通过优先抑制E sigma 70 RNA聚合酶全酶转录,促进细菌从指数生长期向稳定期的转变。与这一功能相一致的是,6S RNA的细胞浓度在稳定期会增加。我们研究了导致6S RNA浓度呈现生长阶段依赖性差异的潜在机制。为此,我们分析了典型的细菌生长阶段调节因子以及应激调节因子FIS、H-NS、LRP和StpA对6S RNA表达的影响。对这些蛋白各自缺陷型菌株中6S RNA积累情况的测量结果支持了它们作为潜在调节因子的作用。通过凝胶阻滞实验和DNase I足迹实验证明了这四种蛋白与含有6S RNA启动子的DNA片段存在特异性结合。此外,利用E sigma 70和E sigma 38这两种RNA聚合酶全酶进行的体外转录分析表明,H-NS、StpA和LRP可直接抑制6S RNA转录,而FIS似乎起到双重调节作用。在存在ppGpp的情况下进行的体外转录实验表明,6S RNA启动子并非受到严格调控。我们的结果强调,6S RNA转录的调控依赖于一个复杂的网络,该网络涉及一组在适应不断变化的生长条件方面具有普遍重要性的细菌调节因子。