Park S Y, Kelminson K L, Lee A K, Zhang P, Warner R E, Rehkopf D H, Calderwood S B, Koehler J E
Division of Infectious Diseases, Department of Pediatrics, University of California-San Francisco, 94143-0654, USA.
J Bacteriol. 2001 Oct;183(19):5751-5. doi: 10.1128/JB.183.19.5751-5755.2001.
Environmental iron concentrations coordinately regulate transcription of genes involved in iron acquisition and virulence via the ferric uptake regulation (fur) system. We identified and sequenced the fur gene and flanking regions of three Bartonella species. The most notable difference between Bartonella Fur and other Fur proteins was a substantially higher predicted isoelectric point. No promoter activity or Fur autoregulation was detected using a gfp reporter gene fused to the 204 nucleotides immediately upstream of the Bartonella fur gene. Bartonella henselae fur gene expression complemented a Vibrio cholerae fur mutant.
环境铁浓度通过铁摄取调节(fur)系统协同调节参与铁获取和毒力的基因的转录。我们鉴定并测序了三种巴尔通体物种的fur基因及其侧翼区域。巴尔通体Fur与其他Fur蛋白之间最显著的差异是预测的等电点明显更高。使用融合到巴尔通体fur基因上游紧邻的204个核苷酸的绿色荧光蛋白报告基因,未检测到启动子活性或Fur自动调节。亨氏巴尔通体fur基因表达补充了霍乱弧菌fur突变体。