首页> 外文期刊>Journal of bacteriology >Characterization by deletion and localized mutagenesis in vitro of the promoter region of the Escherichia coli ompC gene and importance of the upstream DNA domain in positive regulation by the OmpR protein.
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Characterization by deletion and localized mutagenesis in vitro of the promoter region of the Escherichia coli ompC gene and importance of the upstream DNA domain in positive regulation by the OmpR protein.

机译:通过大肠杆菌ompC基因启动子区的缺失和体外诱变来表征,以及上游DNA结构域在OmpR蛋白正调控中的重要性。

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The ompC gene codes for a major outer membrane protein whose expression is regulated by the ompR and envZ genes. Two sets of promoter deletion mutants, with upstream and downstream deletions, were constructed on a plasmid in vitro, and their promoter activity was studied by connecting them with the lacZ gene. The DNA sequence for the ompC promoter, including the -35 and -10 regions and the mRNA start site, was defined at the region about 100 base pairs upstream from the ATG initiation codon for the pro-OmpC protein. An additional 61-base-pair sequence extending upstream from the -35 region was required for the ompC promoter to function fully. After targeting the upstream region of the ompC promoter fused to the lacZ gene on a plasmid, in vitro-localized mutagenesis was performed to isolate cis-dominant mutations that affect ompC transcription. Four mutant groups, each of which had common phenotypes for expression and regulation of the gene, were identified. The individual groups also had common base substitutions. In two of the groups, the common base substitutions were localized in the upstream region of the ompC promoter, whereas in the other two they were localized in the -35 region. From these results, the upstream region of the ompC promoter was considered to be the domain responsible for activation by the ompR gene product.
机译:ompC基因编码一种主要的外膜蛋白,其表达受ompR和envZ基因调控。体外在质粒上构建了两组具有上游和下游缺失的启动子缺失突变体,并通过将其与lacZ基因连接来研究其启动子活性。 ompC启动子的DNA序列,包括-35和-10区以及mRNA起始位点,被定义在pro-OmpC蛋白ATG起始密码子上游约100个碱基对的区域。为了使ompC启动子充分发挥功能,还需要从-35区上游延伸的另外61个碱基对序列。在靶向与质粒上的lacZ基因融合的ompC启动子的上游区域后,进行了体外定位诱变以分离影响ompC转录的顺式显性突变。鉴定了四个突变体组,每个突变体组具有用于基因表达和调控的共同表型。各个组也具有共同的碱基取代。在两组中,常见的碱基取代位于ompC启动子的上游区域,而在另两个组中,它们位于-35区域。根据这些结果,ompC启动子的上游区域被认为是负责ompR基因产物激活的结构域。

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