Waters V L, Crosa J H
Department of Microbiology and Immunology, Oregon Health Sciences University, Portland 97201.
J Bacteriol. 1988 Nov;170(11):5153-60. doi: 10.1128/jb.170.11.5153-5160.1988.
Although the aerobactin-mediated iron uptake system has been characterized genetically in Escherichia coli, the siderophore aerobactin was chemically characterized after purification from culture supernatants of Aerobacter aerogenes 62-1, a member of the Klebsielleae. We have cloned and mapped the genes encoding the aerobactin system genes of A. aerogenes 62-1 and begun characterization of the relevant proteins and enzymatic activities of this plasmid-mediated aerobactin system. Published chemical data indicate that the siderophore aerobactin of E. coli is the same molecule as the aerobactin of Aerobacter aerogenes 62-1, but we have found that both the genes and the complement of proteins making up the biosynthetic enzymes in the two systems have diverged. In contrast, the outer membrane receptors for ferric aerobactin of the two systems showed immunologic cross-reactivity, were of the same molecular size (74 kilodaltons), and were encoded by homologous DNA sequences.
尽管在大肠杆菌中已对气杆菌素介导的铁摄取系统进行了遗传学特征分析,但铁载体气杆菌素是从克雷伯氏菌属成员产气气杆菌62-1的培养上清液中纯化后进行化学特征分析的。我们已经克隆并定位了产气气杆菌62-1的气杆菌素系统基因,并开始对该质粒介导的气杆菌素系统的相关蛋白质和酶活性进行表征。已发表的化学数据表明,大肠杆菌的铁载体气杆菌素与产气气杆菌62-1的气杆菌素是同一分子,但我们发现两个系统中构成生物合成酶的基因和蛋白质组成都已发生分化。相比之下,两个系统中铁气杆菌素的外膜受体表现出免疫交叉反应性,分子大小相同(74千道尔顿),并且由同源DNA序列编码。