Whitfield Crystal R, Wardle Simon J, Haniford David B
Department of Biochemistry, University of Western Ontario, London, Ontario, Canada N6A 5C1.
Nucleic Acids Res. 2009 Feb;37(2):309-21. doi: 10.1093/nar/gkn935. Epub 2008 Nov 28.
The histone-like nucleoid structuring protein (H-NS) is an important regulator of stress response and virulence genes in gram-negative bacteria. In addition to binding regulatory regions of genes in a structure-specific manner, H-NS also binds in a structure-specific manner to sites in the Tn10 transpososome, allowing it to act as a positive regulator of Tn10 transposition. This is the only example to date of H-NS regulating a transposition system by interacting directly with the transposition machinery. In general, transposition complexes tend to include segments of deformed DNA and given the capacity of H-NS to bind such structures, and the results from the Tn10 system, we asked if H-NS might regulate another transposition system (Tn5) by directly binding the transposition machinery. We show in the current work that H-NS does bind Tn5 transposition complexes and use hydroxyl radical footprinting to characterize the H-NS interaction with the Tn5 transpososome. We also show that H-NS can promote Tn5 transpososome formation in vitro, which correlates with the Tn5 system showing a dependence on H-NS for transposition in vivo. Taken together the results suggest that H-NS might play an important role in the regulation of many different bacterial transposition systems and thereby contribute directly to lateral gene transfer.
类组蛋白核仁结构蛋白(H-NS)是革兰氏阴性菌应激反应和毒力基因的重要调节因子。除了以结构特异性方式结合基因的调控区域外,H-NS还以结构特异性方式结合Tn10转座体中的位点,使其能够作为Tn10转座的正调节因子发挥作用。这是迄今为止H-NS通过与转座机制直接相互作用来调节转座系统的唯一例子。一般来说,转座复合物往往包含变形DNA片段,鉴于H-NS具有结合此类结构的能力以及Tn10系统的研究结果,我们不禁要问,H-NS是否可能通过直接结合转座机制来调节另一个转座系统(Tn5)。我们在当前研究中表明,H-NS确实能结合Tn5转座复合物,并利用羟基自由基足迹法来表征H-NS与Tn5转座体的相互作用。我们还表明,H-NS能够在体外促进Tn5转座体的形成,这与Tn5系统在体内转座依赖于H-NS的现象相关。综合这些结果表明,H-NS可能在许多不同细菌转座系统的调节中发挥重要作用,从而直接促进横向基因转移。