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Activation of multiple antibiotic resistance and binding of stress-inducible promoters by Escherichia coli Rob protein.

机译:大肠杆菌Rob蛋白激活多种抗生素抗性并与应激诱导型启动子结合。

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摘要

Multiple antibiotic resistance in Escherichia coli can be mediated by induction of the SoxS or MarA protein, triggered by oxygen radicals (in the soxRS regulon) or certain antibiotics (in the marRAB regulon), respectively. These small proteins (SoxS, 107 residues; MarA, 127 residues) are homologous to the C terminus of the XylS-AraC family of proteins and are more closely related to a approximately 100-residue segment in the N terminus of Rob protein, which binds the right arm of the replication origin, oriC. We investigated whether the SoxS-MarA homology in Rob might extend to the regulation of some of the same inducible genes. Overexpression of Rob indeed conferred multiple antibiotic resistance similar to that known for SoxS and MarA (against chloramphenicol, tetracycline, nalidixic acid, and puromycin), as well as resistance to the superoxide-generating compound phenazine methosulfate. The Rob-induced antibiotic resistance depended only partially on the micF antisense RNA that down-regulates the OmpF outer membrane porin to limit antibiotic uptake. Similar antibiotic resistance was conferred by expression of a Rob fragment containing only the N-terminal 123 residues that constitute the SoxS-MarA homology. Both intact Rob and the N-terminal fragment activated expression of stress genes (inaA, fumC, sodA) but with a pattern distinct from that found for SoxS and MarA. Purified Rob protein bound a DNA fragment containing the micF promoter (50% bound at approximately 10(-9) M Rob) as strongly as it did oriC, and it bound more weakly to DNA containing the sodA, nfo, or zwf promoter (50% bound at 10(-8) to 10(-7) M). Rob formed multiple DNA-protein complexes with these fragments, as seen previously for SoxS. These data point to a DNA-binding gene activator module used in different protein contexts.
机译:大肠杆菌中的多种抗生素抗性可以通过分别由氧自由基(在soxRS regulon中)或某些抗生素(在marRAB regulon中)触发的SoxS或MarA蛋白的诱导来介导。这些小蛋白(SoxS,107个残基; MarA,127个残基)与XylS-AraC蛋白质家族的C末端同源,并且与Rob蛋白质N末端的大约100个残基片段紧密相关,复制起点的右臂oriC。我们调查了Rob中的SoxS-MarA同源性是否可能扩展到某些相同诱导基因的调控。 Rob的过量表达确实赋予了多种抗生素抗性,类似于SoxS和MarA(针对氯霉素,四环素,萘啶酸和嘌呤霉素),以及对产生超氧化物的化合物吩嗪硫酸甲酯的抗性。 Rob诱导的抗生素耐药性仅部分依赖于micF反义RNA,该RNA下调OmpF外膜孔蛋白以限制抗生素吸收。通过表达仅包含构成SoxS-MarA同源性的N-末端123个残基的Rob片段而赋予了相似的抗生素抗性。完整的Rob和N端片段均激活了应激基因(inaA,fumC,sodA)的表达,但模式不同于SoxS和MarA。纯化的Rob蛋白与oriC一样牢固地结合了包含micF启动子的DNA片段(50%结合在大约10(-9)M Rob上),并且与包含sodA,nfo或zwf启动子的DNA结合更弱(50 %结合在10(-8)至10(-7)M)。如先前在SoxS中所见,Rob与这些片段形成了多个DNA-蛋白质复合物。这些数据指向在不同蛋白质环境中使用的DNA结合基因激活剂模块。

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