Department of Microbiology and Immunology, Northwestern University Medical School, Chicago, IL 60611, USA.
Microbiology (Reading). 2012 Mar;158(Pt 3):721-735. doi: 10.1099/mic.0.055533-0. Epub 2011 Dec 8.
The Gram-negative bacterium Legionella pneumophila elaborates the siderophore legiobactin. We previously showed that cytoplasmic LbtA helps mediate legiobactin synthesis, inner-membrane LbtB promotes export of legiobactin, and outer-membrane LbtU acts as the ferrisiderophore receptor. RT-PCR analyses now identified lbtC as an iron-repressed gene that is the final gene in an operon containing lbtA and lbtB. In silico analysis predicted that LbtC is an inner-membrane protein that belongs to the major facilitator superfamily (MFS). Although capable of normal growth in standard media, lbtC mutants were defective for growth on iron-depleted agar media. While producing normal levels of legiobactin, lbtC mutants were unable to utilize supplied legiobactin to stimulate growth on iron-depleted media and displayed an impaired ability to take up radiolabelled iron. All lbtC mutant phenotypes were complemented by reintroduction of an intact copy of lbtC. When a cloned copy of both lbtC and lbtU was introduced into a heterologous bacterium (Legionella longbeachae), the organism acquired the ability to utilize legiobactin to grow better on low-iron media. Together, these data indicate that LbtC is involved in the uptake of legiobactin, and based upon its predicted location is most likely the mediator of ferrilegiobactin transport across the inner membrane. The data are also a unique documentation of how an MFS protein can promote bacterial iron-siderophore import, standing in contrast to the vast majority of studies which have defined ABC-type permeases as the mediators of siderophore import across the Gram-negative inner membrane or the Gram-positive cytoplasmic membrane.
革兰氏阴性菌嗜肺军团菌产生铁载体军团菌素。我们之前的研究表明细胞质中的 LbtA 有助于介导军团菌素的合成,内膜 LbtB 促进军团菌素的外排,外膜 LbtU 作为铁载体受体。实时 PCR 分析现在确定 lbtC 是一个铁抑制基因,它是包含 lbtA 和 lbtB 的操纵子的最后一个基因。计算机分析预测 LbtC 是一种内膜蛋白,属于主要促进剂超家族(MFS)。尽管 lbtC 突变体在标准培养基中能够正常生长,但在缺铁琼脂培养基上的生长能力却存在缺陷。虽然能够产生正常水平的军团菌素,但 lbtC 突变体无法利用供应的军团菌素来刺激缺铁培养基上的生长,并且摄取放射性标记铁的能力受损。lbtC 突变体的所有表型都可以通过重新引入完整的 lbtC 拷贝来弥补。当克隆的 lbtC 和 lbtU 拷贝被引入到一种异源菌(长滩军团菌)中时,该生物体获得了利用军团菌素在低铁培养基中更好生长的能力。综上所述,这些数据表明 LbtC 参与了军团菌素的摄取,并且根据其预测的位置,它很可能是铁-军团菌素穿过内膜运输的介质。这些数据也是 MFS 蛋白如何促进细菌铁载体摄取的独特例证,与绝大多数研究形成鲜明对比,这些研究定义了 ABC 型转运蛋白是革兰氏阴性菌内膜或革兰氏阳性菌细胞质膜中铁载体摄取的介质。