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枯草芽孢杆菌中头孢西丁抗性的产生是由于启动子的正向突变和组成型 ABC 转运蛋白基因 bmrA 的 mRNA 稳定性增加所致。

Cervimycin C resistance in Bacillus subtilis is due to a promoter up-mutation and increased mRNA stability of the constitutive ABC-transporter gene bmrA.

机构信息

Leibniz Institute for Natural Product Research and Infection Biology, Hans-Knöll-Institute, Jena, Germany.

出版信息

FEMS Microbiol Lett. 2010 Dec;313(2):155-63. doi: 10.1111/j.1574-6968.2010.02143.x. Epub 2010 Nov 15.

DOI:10.1111/j.1574-6968.2010.02143.x
PMID:21077936
Abstract

Two independent cervimycin C (CmC)-resistant clones of Bacillus subtilis were identified, each carrying two mutations in the intergenic region preceding the ABC transporter gene bmrA. In the double mutant, real-time PCR revealed an increased amount of bmrA mRNA with increased stability. Accordingly, isolation of membrane proteins yielded a strong band at 64 kDa corresponding to BmrA. Analyses showed that one mutation optimized the -35 box sequence conferring resistance to 3 μM CmC, while the +6 mutation alone had no effect, but increased the potential of the strain harboring the -35 mutation to grow at 5 μM CmC. Transcriptional fusions revealed an elevated bmrA promoter activity for the double mutant. Electrophoretic mobility shift assays (EMSAs) confirmed a 30-fold higher binding affinity of RNA polymerase for this mutant compared with the wild type, and the effect was due to the -35 box alteration of the bmrA promoter. In vitro transcription experiments substantiated the results of the EMSA. EMSAs in the presence of heparin indicated that the mutations did not influence the formation and/or the stability of open complexes. Half-life measurements demonstrated that the +6 mutation stabilized bmrA mRNA ≈ 2-fold. Overall, we found that an ABC transporter confers antibiotic resistance by the cumulative effects of two mutations in the promoter region.

摘要

两个独立的枯草芽孢杆菌耐头孢菌素 C (CmC) 克隆被鉴定出来,每个克隆在 ABC 转运蛋白基因 bmrA 之前的基因间隔区携带两个突变。在双突变体中,实时 PCR 显示 bmrA mRNA 的量增加,稳定性增加。相应地,膜蛋白的分离在 64 kDa 处产生了一个强带,对应于 BmrA。分析表明,一个突变优化了 -35 框序列,赋予了对 3 μM CmC 的抗性,而单独的 +6 突变没有影响,但增加了携带 -35 突变的菌株在 5 μM CmC 中生长的潜力。转录融合显示双突变体的 bmrA 启动子活性升高。电泳迁移率变动分析 (EMSA) 证实,与野生型相比,该突变体中 RNA 聚合酶的结合亲和力提高了 30 倍,这是由于 bmrA 启动子的 -35 框改变所致。体外转录实验证实了 EMSA 的结果。在肝素存在的情况下进行的 EMSA 表明,这些突变没有影响开放复合物的形成和/或稳定性。半衰期测量表明,+6 突变使 bmrA mRNA 稳定约 2 倍。总的来说,我们发现一个 ABC 转运蛋白通过启动子区域的两个突变的累积效应赋予抗生素抗性。

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