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Bacillus cereus Fur regulates iron metabolism and is required for full virulence

机译:芽孢杆菌毛皮调节铁代谢,是完全毒力所必需的

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A homologue of the Bacillus subtilis fur gene was identified in Bacillus cereus and characterized. The predicted amino acid sequence of the cloned gene was found to be highly similar to other members of the Fur family of transcriptional regulators. The B. cereus fur gene was shown to partially complement an Escherichia coli fur mutant. Purified B. cereus Fur bound specifically to a 19?bp DNA sequence homologous to the B. subtilis Fur box in a metal-dependent manner. Analysis of the available B. cereus genome data identified a number of genes which contain predicted Fur box sequences in the promoter region. Many of these genes are predicted to play a role in bacterial iron uptake and metabolism, but several have also been implicated as having a role in virulence. Fur and iron regulation of a siderophore biosynthesis operon was confirmed in a β-galactosidase assay. A B. cereus fur null strain was constructed by allelic replacement of the chromosomal gene with a copy disrupted with a kanamycin resistance cassette. The Δfur mutant was found to constitutively express siderophores, to accumulate iron intracellularly to a level approximately threefold greater than the wild-type, and to be hypersensitive to hydrogen peroxide. In an insect infection model, the virulence of the fur null strain was found to be significantly attenuated, highlighting the essential role played by Fur in the virulence of this pathogen.
机译:芽孢杆菌毛皮基因的同源物在芽孢杆菌中鉴定出来并表征。发现克隆基因的预测氨基酸序列与转录调节剂的毛皮家族的其他成员高度相似。 B.Cereus毛虫基因显示为部分补充大肠杆菌毛虫突变体。纯化的B.患者皮毛,特异性依赖于19〜BP DNA序列,以金属依赖性方式同源于B.枯草芽孢杆菌毛盒。可用B.癌症的分析鉴定了许多含有启动子区域中预测的毛盒序列的基因。预计许多这些基因将在细菌铸铁吸收和代谢中发挥作用,但是几种也涉及在毒力中具有作用。在β-半乳糖苷酶测定中证实了膀胱生物合成术术的毛皮和铁调节。通过与卡霉素抵抗盒中断的拷贝破坏染色体基因的等特性替代染色体基因构建了B.Cereus毛虫菌株。发现Δfur突变体组成型表达施工小丘,以将铁细胞内累积到大约三倍的水平大于野生型,并对过氧化氢过敏。在昆虫感染模型中,发现毛皮菌株的毒力显着减弱,突出了毛皮在该病原体的毒力中发挥的基本作用。

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