Dorsey Caleb W, Tolmasky Marcelo E, Crosa Jorge H, Actis Luis A
Department of Microbiology, Miami University, Oxford, OH 45056, USA.
Department of Biological Science, School of Natural Science and Mathematics, California State University, Fullerton, CA, USA.
Microbiology (Reading). 2003 May;149(Pt 5):1227-1238. doi: 10.1099/mic.0.26204-0.
The Acinetobacter baumannii 8399 clinical isolate secretes dihydroxybenzoic acid (DHBA) and a high-affinity catechol siderophore, which is different from other bacterial iron chelators already characterized. Complementation assays with enterobactin-deficient Escherichia coli strains led to the isolation of a cosmid clone containing A. baumannii 8399 genes required for the biosynthesis and activation of DHBA. Accordingly, the cloned fragment harbours a dhbACEB polycistronic operon encoding predicted proteins highly similar to several bacterial proteins required for DHBA biosynthesis from chorismic acid. Genes encoding deduced proteins related to the E. coli Fes and the Bacillus subtilis DhbF proteins, and a putative Yersinia pestis phosphopantetheinyl transferase, all of them involved in the assembly and utilization of catechol siderophores in other bacteria, were found next to the dhbACEB locus. This A. baumannii 8399 gene cluster also contained the om73, p45 and p114 predicted genes encoding proteins potentially involved in transport of ferric siderophore complexes. The deduced products of the p114 and p45 genes are putative membrane proteins that belong to the RND and MFS efflux pump proteins, respectively. Interestingly, P45 is highly related to the E. coli P43 (EntS) protein that participates in the secretion of enterobactin. Although P114 is similar to other bacterial efflux pump proteins involved in antibiotic resistance, its genetic arrangement within this A. baumannii 8399 locus is different from that described in other bacteria. The product of om73 is a Fur- and iron-regulated surface-exposed outer-membrane protein. These characteristics together with the presence of a predicted TonB box and its high similarity to other siderophore receptors indicate that OM73 plays such a role in A. baumannii 8399. The 184 nt om73-p114 intergenic region contains promoter elements that could drive the expression of these divergently transcribed genes, all of which are in close proximity to almost perfect Fur boxes. This arrangement explains the iron- and Fur-regulated expression of om73, and provides strong evidence for a similar regulation for the expression of p114.
鲍曼不动杆菌临床分离株8399分泌二羟基苯甲酸(DHBA)和一种高亲和力的儿茶酚铁载体,这与其他已鉴定的细菌铁螯合剂不同。用缺乏肠杆菌素的大肠杆菌菌株进行的互补试验导致分离出一个黏粒克隆,该克隆包含鲍曼不动杆菌8399中DHBA生物合成和激活所需的基因。因此,克隆片段含有一个dhbACEB多顺反子操纵子,其编码的预测蛋白与从分支酸生物合成DHBA所需的几种细菌蛋白高度相似。在dhbACEB基因座旁边发现了与大肠杆菌Fes和枯草芽孢杆菌DhbF蛋白相关的推导蛋白编码基因,以及一个推定的鼠疫耶尔森菌磷酸泛酰巯基乙胺基转移酶基因,所有这些基因都参与其他细菌中儿茶酚铁载体的组装和利用。这个鲍曼不动杆菌8399基因簇还包含om73、p45和p114预测基因,它们编码可能参与铁载体复合物运输的蛋白。p114和p45基因的推导产物分别是推定的膜蛋白,属于RND和MFS外排泵蛋白。有趣的是,P45与参与肠杆菌素分泌的大肠杆菌P43(EntS)蛋白高度相关。虽然P114与其他参与抗生素抗性的细菌外排泵蛋白相似,但其在这个鲍曼不动杆菌8399基因座内的基因排列与其他细菌中描述的不同。om73的产物是一种受Fur和铁调节的表面暴露外膜蛋白。这些特征以及推定的TonB框的存在及其与其他铁载体受体的高度相似性表明,OM73在鲍曼不动杆菌8399中发挥这样的作用。184 nt的om73 - p114基因间区域包含启动子元件,可驱动这些反向转录基因的表达,所有这些基因都紧邻几乎完美的Fur框。这种排列解释了om73的铁和Fur调节表达,并为p114的表达受到类似调节提供了有力证据。