首页> 外文期刊>Applied Microbiology >Regulation of the Cobalt/Nickel Efflux Operon dmeRF in Agrobacterium tumefaciens and a Link between the Iron-Sensing Regulator RirA and Cobalt/Nickel Resistance
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Regulation of the Cobalt/Nickel Efflux Operon dmeRF in Agrobacterium tumefaciens and a Link between the Iron-Sensing Regulator RirA and Cobalt/Nickel Resistance

机译:根癌农杆菌中钴/镍外流操纵子dmeRF的调控以及铁敏感调节剂RirA和钴/镍抗性之间的联系

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The Agrobacterium tumefaciens C58 genome harbors an operon containing the dmeR (Atu0890) and dmeF (Atu0891) genes, which encode a transcriptional regulatory protein belonging to the RcnR/CsoR family and a metal efflux protein belonging to the cation diffusion facilitator (CDF) family, respectively. The dmeRF operon is specifically induced by cobalt and nickel, with cobalt being the more potent inducer. Promoter- lacZ transcriptional fusion, an electrophoretic mobility shift assay, and DNase I footprinting assays revealed that DmeR represses dmeRF transcription through direct binding to the promoter region upstream of dmeR . A strain lacking dmeF showed increased accumulation of intracellular cobalt and nickel and exhibited hypersensitivity to these metals; however, this strain displayed full virulence, comparable to that of the wild-type strain, when infecting a Nicotiana benthamiana plant model under the tested conditions. Cobalt, but not nickel, increased the expression of many iron-responsive genes and reduced the induction of the SoxR-regulated gene sodBII . Furthermore, control of iron homeostasis via RirA is important for the ability of A. tumefaciens to cope with cobalt and nickel toxicity.IMPORTANCE The molecular mechanism of the regulation of dmeRF transcription by DmeR was demonstrated. This work provides evidence of a direct interaction of apo-DmeR with the corresponding DNA operator site in vitro . The recognition site for apo-DmeR consists of 10-bp AT-rich inverted repeats separated by six C bases (5′-ATATAGTATACCCCCCTATAGTATAT-3′). Cobalt and nickel cause DmeR to dissociate from the dmeRF promoter, which leads to expression of the metal efflux gene dmeF . This work also revealed a connection between iron homeostasis and cobaltickel resistance in A. tumefaciens .
机译:根癌农杆菌C58基因组包含一个操纵子,该操纵子包含dmeR(Atu0890)和dmeF(Atu0891)基因,它们编码属于RcnR / CsoR家族的转录调节蛋白和属于阳离子扩散促进子(CDF)家族的金属外排蛋白,分别。 dmeRF操纵子是由钴和镍特异性诱导的,钴是更有效的诱导剂。 ProlacterlacZ转录融合,电泳迁移率迁移测定和DNase I足迹测定表明,DmeR通过直接结合dmeR上游的启动子区域来抑制dmeRF转录。缺乏dmeF的菌株显示出细胞内钴和镍的积累增加,并对这些金属表现出超敏性。然而,当在测试条件下感染本氏烟草植物模型时,该菌株表现出与野生型菌株相当的完全毒力。钴而不是镍增加了许多铁反应性基因的表达,并减少了SoxR调控基因sodBII的诱导。此外,通过RirA控制铁稳态对于根癌农杆菌应对钴和镍毒性的能力很重要。重要说明证明了通过DmeR调节dmeRF转录的分子机制。这项工作提供了载脂蛋白DmeR与相应的DNA操纵子位点在体外直接相互作用的证据。 apo-DmeR的识别位点由6个C碱基(5'-ATATAGTATACCCCCCTATAGTATAT-3')隔开的富含10bp AT的反向重复序列组成。钴和镍导致DmeR从dmeRF启动子解离,从而导致金属外排基因dmeF表达。这项工作还揭示了根癌农杆菌中铁稳态与钴/镍抗性之间的联系。

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