Kirby A E, Metzger D J, Murphy E R, Connell T D
Witebsky Center for Microbial Pathogenesis and Immunology and Department of Microbiology, School of Medicine and Biomedical Sciences, The State University of New York, Buffalo, New York 14214, USA.
Infect Immun. 2001 Nov;69(11):6951-61. doi: 10.1128/IAI.69.11.6951-6961.2001.
Efficient utilization of heme as an iron (Fe) source by Bordetella avium requires bhuR, an Fe-regulated gene which encodes an outer membrane heme receptor. Upstream of bhuR is a 507-bp open reading frame, hereby designated rhuI (for regulator of heme uptake), which codes for a 19-kDa polypeptide. Whereas the 19-kDa polypeptide had homology to a subfamily of alternative sigma factors known as the extracytoplasmic function (ECF) sigma factors, it was hypothesized that rhuI encoded a potential in-trans regulator of the heme receptor gene in trans. Support for the model was strengthened by the identification of nucleotide sequences common to ECF sigma-dependent promoters in the region immediately upstream of bhuR. Experimental evidence for the regulatory activities of rhuI was first revealed by recombinant experiments in which overproduction of rhuI was correlated with a dramatically increased expression of BhuR. A putative rhuI-dependent bhuR promoter was identified in the 199-bp region located proximal to bhuR. When a transcriptional fusion of the 199-bp region and a promoterless lacZ gene was introduced into Escherichia coli, promoter activity was evident, but only when rhuI was coexpressed in the cell. Sigma competition experiments in E. coli demonstrated that rhuI conferred biological properties on the cell that were consistent with RhuI having sigma factor activity. Heme, hemoglobin, and several other heme-containing proteins were shown to be the extracellular inducers of the rhuI-dependent regulatory system. Fur titration assays indicated that expression of rhuI was probably Fur dependent.
禽博德特氏菌高效利用血红素作为铁(Fe)源需要bhuR,bhuR是一个受铁调节的基因,编码一种外膜血红素受体。bhuR上游是一个507 bp的开放阅读框,在此命名为rhuI(血红素摄取调节因子),它编码一种19 kDa的多肽。尽管这种19 kDa的多肽与一类称为胞外功能(ECF)σ因子的替代σ因子亚家族具有同源性,但据推测rhuI编码一种潜在的反式血红素受体基因反式调节因子。bhuR紧邻上游区域中ECF σ因子依赖性启动子共有的核苷酸序列的鉴定,加强了对该模型的支持。rhuI调节活性的实验证据首先通过重组实验揭示,其中rhuI的过量表达与BhuR表达的显著增加相关。在紧邻bhuR的199 bp区域鉴定出一个假定的依赖rhuI的bhuR启动子。当将199 bp区域与无启动子的lacZ基因的转录融合体导入大肠杆菌时,启动子活性明显,但仅当rhuI在细胞中共表达时才会出现。大肠杆菌中的σ竞争实验表明,rhuI赋予细胞的生物学特性与RhuI具有σ因子活性一致。血红素、血红蛋白和其他几种含血红素的蛋白质被证明是rhuI依赖性调节系统的细胞外诱导物。铁摄取调节蛋白(Fur)滴定分析表明,rhuI的表达可能依赖于Fur。