Louvel H, Bommezzadri S, Zidane N, Boursaux-Eude C, Creno S, Magnier A, Rouy Z, Médigue C, Saint Girons I, Bouchier C, Picardeau M
Laboratoire des Spirochètes, Institut Pasteur, 28 rue du docteur Roux, 75724 Paris Cedex 15, France.
J Bacteriol. 2006 Nov;188(22):7893-904. doi: 10.1128/JB.00711-06. Epub 2006 Sep 15.
The spirochetes of the Leptospira genus contain saprophytic and pathogenic members, the latter being responsible for leptospirosis. Despite the recent sequencing of the genome of the pathogen L. interrogans, the slow growth of these bacteria, their virulence in humans, and a lack of genetic tools make it difficult to work with these pathogens. In contrast, the development of numerous genetic tools for the saprophyte L. biflexa enables its use as a model bacterium. Leptospira spp. require iron for growth. In this work, we show that Leptospira spp. can acquire iron from different sources, including siderophores. A comparative genome analysis of iron uptake systems and their regulation in the saprophyte L. biflexa and the pathogen L. interrogans is presented in this study. Our data indicated that, for instance, L. biflexa and L. interrogans contain 8 and 12 genes, respectively, whose products share homology with proteins that have been shown to be TonB-dependent receptors. We show that some genes involved in iron uptake were differentially expressed in response to iron. In addition, we were able to disrupt several putative genes involved in iron acquisition systems or iron regulation in L. biflexa. Comparative genomics, in combination with gene inactivation, gives us significant functional information on iron homeostasis in Leptospira spp.
钩端螺旋体属的螺旋体包含腐生菌和致病菌,后者是钩端螺旋体病的病原体。尽管最近对问号钩端螺旋体病原体的基因组进行了测序,但这些细菌生长缓慢、对人类具有致病性,且缺乏遗传工具,使得对这些病原体的研究工作颇具难度。相比之下,为双曲钩端螺旋体腐生菌开发的众多遗传工具使其能够用作模式细菌。钩端螺旋体属细菌生长需要铁。在本研究中,我们表明钩端螺旋体属细菌可以从包括铁载体在内的不同来源获取铁。本研究对双曲钩端螺旋体腐生菌和问号钩端螺旋体病原体中铁摄取系统及其调控进行了比较基因组分析。我们的数据表明,例如,双曲钩端螺旋体和问号钩端螺旋体分别含有8个和12个基因,其产物与已被证明是依赖TonB的受体的蛋白质具有同源性。我们发现,一些参与铁摄取的基因在铁的作用下差异表达。此外,我们能够破坏双曲钩端螺旋体中几个参与铁获取系统或铁调控的假定基因。比较基因组学与基因失活相结合,为我们提供了关于钩端螺旋体属细菌铁稳态的重要功能信息。