Gross R, Engelbrecht F, Braun V
Mol Gen Genet. 1985;201(2):204-12. doi: 10.1007/BF00425661.
Iron acquisition via aerobactin enhances the virulence of Escherichia coli. Genes that specify functions for aerobactin synthesis and iron(III)-aerobactin transport have been identified on several ColV plasmids. Previously, we cloned the locus for aerobactin synthesis from pColV-K311 and assigned to three loci termed aerA, aerB, and aerC the functions for hydroxylation of lysine, acetylation of the 6-amino group of 6-hydroxy-lysine and coupling of N-acetyl-N-hydroxy-lysine with citrate, respectively (Gross et al. 1984). In this paper we show that aerA and aerB determine polypeptides with molecular weights of 50,000 and 35,000, respectively. We identified a fourth gene designated aerD that codes for a polypeptide with a molecular weight of 60,000, and which is required for the linkage of one residue of N-acetyl-N-hydroxy-lysine to citrate. The aerC gene product completes aerobactin synthesis by coupling the second N-acetyl-N-hydroxy-lysine to the monoacylated derivative citrate. The order of the genes in the operon was found to be aerD-aerB-aerC-aerA.
通过气杆菌素获取铁元素可增强大肠杆菌的毒力。在多个ColV质粒上已鉴定出指定气杆菌素合成功能以及铁(III)-气杆菌素转运功能的基因。此前,我们从pColV-K311中克隆了气杆菌素合成基因座,并分别将赖氨酸羟基化、6-羟基赖氨酸6-氨基乙酰化以及N-乙酰-N-羟基赖氨酸与柠檬酸偶联的功能指定给三个基因座,即aerA、aerB和aerC(格罗斯等人,1984年)。在本文中,我们表明aerA和aerB分别决定分子量为50,000和35,000的多肽。我们鉴定出了第四个基因,命名为aerD,它编码一种分子量为60,000的多肽,该多肽是将一个N-乙酰-N-羟基赖氨酸残基与柠檬酸连接所必需的。aerC基因产物通过将第二个N-乙酰-N-羟基赖氨酸与单酰化衍生物柠檬酸偶联来完成气杆菌素的合成。发现操纵子中基因的顺序为aerD-aerB-aerC-aerA。