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镍响应调节蛋白(NikR)介导幽门螺杆菌外膜蛋白FecA3(HP1400)和FrpB4(HP1512)的镍响应性转录抑制。

NikR mediates nickel-responsive transcriptional repression of the Helicobacter pylori outer membrane proteins FecA3 (HP1400) and FrpB4 (HP1512).

作者信息

Ernst Florian D, Stoof Jeroen, Horrevoets Wannie M, Kuipers Ernst J, Kusters Johannes G, van Vliet Arnoud H M

机构信息

Department of Gastroenterology and Hepatology, Erasmus MC-University Medical Center, Room L-455, 's-Gravendijkwal 230, 3015 CE Rotterdam, The Netherlands.

出版信息

Infect Immun. 2006 Dec;74(12):6821-8. doi: 10.1128/IAI.01196-06. Epub 2006 Oct 2.

Abstract

The transition metal nickel plays an important role in gastric colonization and persistence of the important human pathogen Helicobacter pylori, as it is the cofactor of the abundantly produced acid resistance factor urease. Nickel uptake through the inner membrane is mediated by the NixA protein, and the expression of NixA is controlled by the NikR regulatory protein. Here we report that NikR also controls the nickel-responsive expression of the FecA3 (HP1400) and FrpB4 (HP1512) outer membrane proteins (OMPs), as well as the nickel-responsive expression of an ExbB-ExbD-TonB system, which may function in energization of outer membrane transport. Transcription and expression of the frpB4 and fecA3 genes were repressed by nickel in wild-type H. pylori 26695, but they were independent of nickel and derepressed in an isogenic nikR mutant. Both the frpB4 and fecA3 genes were transcribed from a promoter directly upstream of their start codon. Regulation by NikR was mediated via nickel-dependent binding to specific operators overlapping either the +1 or -10 sequence in the frpB4 and fecA3 promoters, respectively, and these operators contained sequences resembling the proposed H. pylori NikR recognition sequence (TATWATT-N(11)-AATWATA). Transcription of the HP1339-1340-1341 operon encoding the ExbB2-ExbD2-TonB2 complex was also regulated by nickel and NikR, but not by Fur and iron. In conclusion, H. pylori NikR controls nickel-responsive expression of the HP1400 (FecA3) and HP1512 (FrpB4) OMPs. We hypothesize that these two NikR-regulated OMPs may participate in the uptake of complexed nickel ions and that this process is energized by the NikR-regulated ExbB2-ExbD2-TonB2 system, another example of the specific adaptation of H. pylori to the gastric lifestyle.

摘要

过渡金属镍在重要人类病原体幽门螺杆菌的胃定殖和持续存在过程中发挥着重要作用,因为它是大量产生的耐酸因子脲酶的辅因子。通过内膜摄取镍由NixA蛋白介导,而NixA的表达受NikR调节蛋白控制。在此我们报告,NikR还控制外膜蛋白(OMP)FecA3(HP1400)和FrpB4(HP1512)的镍响应性表达,以及ExbB-ExbD-TonB系统的镍响应性表达,该系统可能在外膜转运的供能过程中发挥作用。在野生型幽门螺杆菌26695中,镍抑制frpB4和fecA3基因的转录和表达,但在同基因nikR突变体中,它们不受镍的影响且去抑制。frpB4和fecA3基因均从其起始密码子上游紧邻的启动子转录。NikR的调控是通过镍依赖性结合分别与frpB4和fecA3启动子中的+1或-10序列重叠的特定操纵子来介导的,并且这些操纵子包含类似于幽门螺杆菌NikR识别序列(TATWATT-N(11)-AATWATA)的序列。编码ExbB2-ExbD2-TonB2复合物的HP1339-1340-1341操纵子的转录也受镍和NikR调节,但不受Fur和铁的调节。总之,幽门螺杆菌NikR控制HP1400(FecA3)和HP1512(FrpB4)OMP的镍响应性表达。我们推测这两种受NikR调控的OMP可能参与复合镍离子的摄取,并且该过程由NikR调控的ExbB2-ExbD2-TonB2系统供能,这是幽门螺杆菌对胃部生存方式特异性适应的又一个例子。

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