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In Vivo Titration Of Mitomycin C Action By The Presence Of Four Escherichia Coli Genomic Regions On Multicopy Plasmid

机译:多拷贝质粒上四个大肠杆​​菌基因组区域的存在滴定丝裂霉素C的作用

摘要

Mitomycin C (MMC), a DNA-damaging agent, is a potent inducer of the bacterial SOS response; surprisingly, it has not been used to select resistant mutants from wild-type Escherichia coli. MMC resistance is caused by the presence of any of four distinct E. coli genes (mdfA, gyrl, rob, and sdiA) on high-copy-number vectors. mdfA encodes a membrane efflux pump whose overexpression results in broad-spectrum chemical resistance. The gyrI (also called sbmC) gene product inhibits DNA gyrase activity in vitro, while the rob protein appears to function in transcriptional activation of efflux pumps. SdiA is a transcriptional activator of ftsQAZ genes involved in cell division.
机译:丝裂霉素C(MMC)是一种DNA破坏剂,是细菌SOS反应的有效诱导剂。令人惊讶的是,它尚未用于从野生型大肠杆菌中选择抗性突变体。 MMC耐药性是由高拷贝数载体上存在四个不同的大肠杆菌基因(mdfA,gyrl,rob和sdiA)引起的。 mdfA编码膜外排泵,其过表达导致广谱耐化学性。 gyrI(也称为sbmC)基因产物在体外抑制DNA旋转酶活性,而rob蛋白似乎在外排泵的转录激活中起作用。 SdiA是参与细胞分裂的ftsQAZ基因的转录激活因子。

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