Salzer Ralf, Kern Timo, Joos Friederike, Averhoff Beate
Molecular Microbiology & Bioenergetics, Institute of Molecular Biosciences, Goethe University Frankfurt, Frankfurt am Main, Germany.
FEMS Microbiol Lett. 2014 Aug;357(1):56-62. doi: 10.1111/1574-6968.12506. Epub 2014 Jul 2.
The thermophilic bacterium Thermus thermophilus HB27 is known for its highly efficient natural transformation system, which has become a model system to study the structure and function of DNA transporter in thermophilic bacteria. The DNA transporter is functionally linked to type IV pili (T4P), which are essential for twitching motility and adhesion to solid surfaces. However, the pilus structures themselves are dispensable for natural transformation. Here, we report that the cellular mRNA levels of the major structural subunit of the T4P, PilA4, are regulated by environmental factors. Growth of T. thermophilus in minimal medium or low temperature (55 °C) leads to a significant increase in pilA4 transcripts. In contrast, the transcript levels of the minor pilin pilA1 as well as other T4P genes are nearly unaffected. The elevated pilA4 mRNA levels are accompanied by an increase in piliation of the cells but not by elevated natural transformation frequencies. Hyperpiliation leads to increased adhesion to plastic surfaces. The increased cell-surface interactions are suggested to represent an adaptive response to temperature stress and may be advantageous for survival of T. thermophilus.
嗜热栖热菌HB27以其高效的自然转化系统而闻名,该系统已成为研究嗜热菌中DNA转运体结构和功能的模型系统。DNA转运体在功能上与IV型菌毛(T4P)相关联,T4P对于细菌的颤动运动和附着于固体表面至关重要。然而,菌毛结构本身对于自然转化并非必需。在此,我们报道T4P主要结构亚基PilA4的细胞mRNA水平受环境因素调控。嗜热栖热菌在基本培养基中生长或在低温(55°C)下培养会导致pilA4转录本显著增加。相比之下,次要菌毛蛋白pilA1以及其他T4P基因的转录水平几乎不受影响。pilA4 mRNA水平的升高伴随着细胞菌毛形成的增加,但自然转化频率并未升高。过度菌毛化导致对塑料表面的粘附增加。细胞表面相互作用的增加被认为是对温度应激的一种适应性反应,可能有利于嗜热栖热菌的生存。