Ernst Florian D, Kuipers Ernst J, Heijens Angela, Sarwari Roya, Stoof Jeroen, Penn Charles W, Kusters Johannes G, van Vliet Arnoud H M
Department of Gastroenterology and Hepatology, Erasmus MC-University Medical Center Rotterdam, Dr. Molewaterplein 40, 3015 GD Rotterdam, The Netherlands.
Infect Immun. 2005 Nov;73(11):7252-8. doi: 10.1128/IAI.73.11.7252-7258.2005.
The NikR protein is a nickel-dependent regulatory protein which is a member of the ribbon-helix-helix family of transcriptional regulators. The gastric pathogen Helicobacter pylori expresses a NikR ortholog, which was previously shown to mediate regulation of metal metabolism and urease expression, but the mechanism governing the diverse regulatory effects had not been described until now. In this study it is demonstrated that NikR can regulate H. pylori nickel metabolism by directly controlling transcriptional repression of NixA-mediated nickel uptake and transcriptional induction of urease expression. Mutation of the nickel uptake gene nixA in an H. pylori 26695 nikR mutant restored the ability to grow in Brucella media supplemented with 200 microM NiCl2 but did not restore nickel-dependent induction of urease expression. Nickel-dependent binding of NikR to the promoter of the nixA gene resulted in nickel-repressed transcription, whereas nickel-dependent binding of NikR to the promoter of the ureA gene resulted in nickel-induced transcription. Subsequent analysis of NikR binding to the nixA and ureA promoters showed that the regulatory effect was dependent on the location of the NikR-recognized binding sequence. NikR recognized the region from -13 to +21 of the nixA promoter, encompassing the +1 and -10 region, and this binding resulted in repression of nixA transcription. In contrast, NikR bound to the region from -56 to -91 upstream of the ureA promoter, resulting in induction of urease transcription. In conclusion, the NikR protein is able to function both as a repressor and as an activator of gene transcription, depending on the position of the binding site.
NikR蛋白是一种镍依赖性调节蛋白,属于转录调节因子的带状螺旋-螺旋家族。胃病原体幽门螺杆菌表达一种NikR直系同源物,先前已证明其介导金属代谢和脲酶表达的调节,但直到现在,控制多种调节作用的机制仍未得到描述。在本研究中,证明了NikR可以通过直接控制NixA介导的镍摄取的转录抑制和脲酶表达的转录诱导来调节幽门螺杆菌的镍代谢。幽门螺杆菌26695 nikR突变体中镍摄取基因nixA的突变恢复了在补充有200 microM NiCl2的布鲁氏菌培养基中生长的能力,但未恢复镍依赖性脲酶表达的诱导。NikR与nixA基因启动子的镍依赖性结合导致镍抑制的转录,而NikR与ureA基因启动子的镍依赖性结合导致镍诱导的转录。随后对NikR与nixA和ureA启动子结合的分析表明,调节作用取决于NikR识别的结合序列的位置。NikR识别nixA启动子从-13到+21的区域,包括+1和-10区域,这种结合导致nixA转录的抑制。相反,NikR与ureA启动子上游-56至-91的区域结合,导致脲酶转录的诱导。总之,NikR蛋白能够根据结合位点的位置作为基因转录的阻遏物和激活物发挥作用。