Spiegelhalter F, Bremer E
Philipps University Marburg, Department of Biology, Germany.
Mol Microbiol. 1998 Jul;29(1):285-96. doi: 10.1046/j.1365-2958.1998.00929.x.
The opuE gene from Bacillus subtilis encodes a transport system (OpuE) for osmoprotective proline uptake and is expressed from two osmoregulated promoters: opuE P-1 recognized by the vegetative sigma factor A (sigma A and opuE P-2 dependent on the stress-induced transcription factor sigma B (sigma B). The contributions of these two promoters to osmoregulation of opuE were analysed. Genetic studies using chromosomal opuE-treA operon fusions revealed that opuE transcription is rapidly induced after an osmotic upshock. The strength of opuE expression is proportionally linked to the osmolarity of the growth medium. Deletion analysis of the opuE regulatory region identified a 330 bp DNA segment carrying all sequences required in cis for full and osmoregulated transcription. The proper rotational orientation of the upstream region present within this fragment was essential for the function of both opuE promoters. Mutant opuE-treA fusions with defects in either the sigma A-or the sigma B-dependent promoters revealed different contributions of these sequences to the overall osmoregulation of opuE. opuE P-2 (sigma B) activity increased transiently after an osmotic upshock and did not significantly contribute to the level of opuE expression in cells subjected to long-term osmotic stress. In contrast, transcription initiating from opuE P-1 (sigma A) rose in proportion to the external osmolarity and was maintained at high levels. Moreover, both promoters exhibited a different response to the osmoprotectant glycine betaine in the medium. Our results suggest that at least two different signal transduction pathways operate in B. subtilis to communicate osmotic changes in the environment to the transcription apparatus of the cell.
来自枯草芽孢杆菌的opuE基因编码一种用于摄取渗透保护剂脯氨酸的转运系统(OpuE),它由两个受渗透调节的启动子表达:opuE P-1由营养型σ因子A识别(σA),opuE P-2依赖于应激诱导的转录因子σB(σB)。分析了这两个启动子对opuE渗透调节的贡献。使用染色体opuE-treA操纵子融合进行的遗传学研究表明,在渗透冲击后opuE转录迅速被诱导。opuE表达的强度与生长培养基的渗透压成比例相关。对opuE调控区的缺失分析确定了一个330 bp的DNA片段,其携带顺式作用所需的所有序列以实现完整的和受渗透调节的转录。该片段内上游区域的正确旋转方向对于两个opuE启动子的功能至关重要。在σA或σB依赖的启动子中存在缺陷的突变opuE-treA融合体揭示了这些序列对opuE整体渗透调节的不同贡献。opuE P-2(σB)活性在渗透冲击后短暂增加,并且对长期遭受渗透胁迫的细胞中opuE表达水平没有显著贡献。相比之下,从opuE P-1(σA)起始的转录与外部渗透压成比例上升并维持在高水平。此外,两个启动子对培养基中的渗透保护剂甘氨酸甜菜碱表现出不同的反应。我们的结果表明,在枯草芽孢杆菌中至少有两条不同的信号转导途径发挥作用,将环境中的渗透变化传递给细胞的转录装置。