Tsukahara Kensuke, Ogura Mitsuo
Institute of Oceanic Research and Development, Tokai University, 3-20-1 Orido-Shimizu, Shizuoka 424-8610, Japan.
BMC Microbiol. 2008 Jan 15;8:8. doi: 10.1186/1471-2180-8-8.
The response regulator DegU and its cognate histidine kinase DegS constitute a two-component system in the Gram-positive soil bacterium Bacillus subtilis. Unphosphorylated and phosphorylated forms of DegU are known to activate target gene transcription in B. subtilis. Although phosphorylated DegU (DegU-P) regulates more than one hundred and twenty genes, the targets of unphosphorylated DegU are unknown, except for comK.
We found that the fla/che (flagella and chemotaxis) operon is positively regulated by unphosphorylated DegU. The effect was most prominent in a strain bearing the functional swrAA gene, a positive regulator of fla/che. Unphosphorylated DegU bound to two regions in the fla/che regulatory region containing an inverted repeat-like sequence that resembles the inverted repeat (IR) in the comK promoter. Mutational analysis revealed that positive regulation of fla/che by SwrAA requires DegU-binding. An analysis of the DegU-P-regulated gene sacB (levansucrase gene) by footprint and mutational analyses revealed that DegU-P bound to a direct repeat (DR) of the DegU-recognition motifs, which has been shown to be functional in vivo, while unphosphorylated DegU did not. These results strongly suggest that the arrangement of the DegU-binding motifs determines whether unphosphorylated DegU or DegU-P binds to the sacB promoter. The hypothesis was confirmed by observing degS-independent expression when the DR in the sacB-lacZ fusion was changed to an IR, suggesting that unphosphorylated DegU regulates the sacB promoter through the newly created IR. This was confirmed by binding of unphosphorylated DegU to the IR in the sacB promoter.
This study demonstrated that DegU positively regulates flgB and sacB through its binding to the promoter regions. We demonstrated that DegU-P prefers binding to DR but not to IR in the sacB promoter.
应答调节因子DegU及其同源组氨酸激酶DegS在革兰氏阳性土壤细菌枯草芽孢杆菌中构成一个双组分系统。已知未磷酸化和磷酸化形式的DegU可激活枯草芽孢杆菌中靶基因的转录。尽管磷酸化的DegU(DegU-P)调控120多个基因,但除了comK之外,未磷酸化的DegU的靶标尚不清楚。
我们发现fla/che(鞭毛与趋化性)操纵子受未磷酸化的DegU正向调控。在携带功能性swrAA基因(fla/che的正向调节因子)的菌株中,这种效应最为显著。未磷酸化的DegU与fla/che调控区中的两个区域结合,这两个区域含有一个类似反向重复序列,类似于comK启动子中的反向重复(IR)。突变分析表明,SwrAA对fla/che的正向调控需要DegU结合。通过足迹法和突变分析对DegU-P调控的基因sacB(果聚糖蔗糖酶基因)进行分析发现,DegU-P与DegU识别基序中的直接重复(DR)结合,这已在体内被证明具有功能,而未磷酸化的DegU则不结合。这些结果强烈表明,DegU结合基序的排列决定了未磷酸化的DegU还是DegU-P与sacB启动子结合。当sacB-lacZ融合体中的DR变为IR时,观察到不依赖DegS的表达,证实了这一假设,这表明未磷酸化的DegU通过新形成的IR调控sacB启动子。未磷酸化的DegU与sacB启动子中的IR结合证实了这一点。
本研究表明,DegU通过与启动子区域结合正向调控flgB和sacB。我们证明,DegU-P在sacB启动子中更倾向于结合DR而非IR。