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幽门螺杆菌脲酶操纵子的鉴定及其通过mRNA降解对pH的响应调控

Identification of the urease operon in Helicobacter pylori and its control by mRNA decay in response to pH.

作者信息

Akada J K, Shirai M, Takeuchi H, Tsuda M, Nakazawa T

机构信息

Department of Microbiology, Yamaguchi University School of Medicine, Ube, Yamaguchi 755-8505, Japan.

出版信息

Mol Microbiol. 2000 Jun;36(5):1071-84. doi: 10.1046/j.1365-2958.2000.01918.x.

Abstract

We investigated the transcription of the urease gene cluster ureABIEFGH in Helicobacter pylori to determine the regulation of gene expression of the highly produced enzyme urease. Northern blot hybridization analysis demonstrated that cells of the wild-type strain grown in an ordinary broth had transcripts of ureAB, ureABI, ureI, ureIE' and ure'FGH, but cells of a ureI-disrupted mutant had only the ureAB transcript. When the wild-type cells were exposed to pH 8 for 30 min, very little mRNA was detected. However, when exposed to pH 6, a large amount of the ureIE" transcript, which was longer than the ureIE' transcript, together with the additional transcripts ureABIEFGH and ure'EFGH were detected. Rifampicin addition experiments demonstrated that urease mRNAs, and the ureIE' transcripts in particular, are more stable at pH 5.5 than at pH 7. In accord with these results, urease activity in the crude cell extract of the pH 5.5 culture was twice as much as that of the pH 7 culture, although the amounts of UreA and UreB detected by immunoblot analysis were similar. The transcription start point of ureI was identified by primer extension using a ureA promoter-deleted mutant, and a consensus sequence of RpoD-RNA polymerase was found in the ureI promoter. The 3' end of the ureIE" mRNA, determined using S1 nuclease mapping, revealed that the transcript is able to cover the majority of the ureE open reading frame (ORF) that might be sufficient for UreE activity. Based on the above results, we conclude that the urease gene cluster of H. pylori consists of two operons, ureAB and ureIEFGH, and that primary transcripts of the latter as well as the read-through transcript, ureABIEFGH, are cleaved to produce several species of mRNA. It has been suggested that the ureIEFGH operon is regulated post-transcriptionally by mRNA decay in response to environmental pH. We are tempted to speculate that the ureE" transcript present in acidic pH may contribute to produce an active product that can proceed the nickel incorporation to the active centre, the final step of urease biosynthesis.

摘要

我们研究了幽门螺杆菌中脲酶基因簇ureABIEFGH的转录情况,以确定这种高产酶——脲酶的基因表达调控机制。Northern印迹杂交分析表明,在普通肉汤中生长的野生型菌株细胞有ureAB、ureABI、ureI、ureIE'和ure'FGH的转录本,但ureI基因缺失突变体的细胞只有ureAB转录本。当野生型细胞暴露于pH 8 30分钟时,检测到的mRNA很少。然而,当暴露于pH 6时,检测到大量比ureIE'转录本更长的ureIE''转录本,以及额外的转录本ureABIEFGH和ure'EFGH。利福平添加实验表明,脲酶mRNA,尤其是ureIE'转录本,在pH 5.5时比在pH 7时更稳定。与这些结果一致的是,pH 5.5培养物的粗细胞提取物中的脲酶活性是pH 7培养物的两倍,尽管免疫印迹分析检测到的UreA和UreB量相似。使用ureA启动子缺失突变体通过引物延伸确定了ureI的转录起始点,并在ureI启动子中发现了RpoD-RNA聚合酶的共有序列。使用S1核酸酶图谱确定的ureIE'' mRNA的3'末端表明,该转录本能够覆盖可能足以支持UreE活性的ureE开放阅读框(ORF)的大部分。基于上述结果,我们得出结论,幽门螺杆菌的脲酶基因簇由两个操纵子ureAB和ureIEFGH组成,后者的初级转录本以及通读转录本ureABIEFGH被切割产生几种mRNA。有人提出,ureIEFGH操纵子在转录后受mRNA降解的调控以响应环境pH。我们不禁推测,酸性pH下存在的ureE''转录本可能有助于产生一种活性产物,该产物可以将镍掺入活性中心,这是脲酶生物合成的最后一步。

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